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Showing 1–50 of 69 results for author: Booth, J

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  1. arXiv:2605.02088  [pdf

    physics.optics

    Sapphire Photonic Crystal Fiber Sensor

    Authors: Mohan Wang, Tongyu Liu, Zipei Song, Richard Reeves, Frank P. Payne, Igor N. Dyson, Kaihui Zhang, Tao Wang, Jian Zhang, Zhitai Jia, Patrick S. Salter, Martin J. Booth, Julian A. J. Fells

    Abstract: Sapphire optical fiber shows great promise for remote sensing in extreme environments approaching 2000 degC, by using laser-processing to form a single-mode waveguide within it. However, for practical application, longer devices with high manufacturability and reliability are required. We report the design, modeling, fabrication, and optimization of an index-guiding sapphire photonic crystal fiber… ▽ More

    Submitted 3 May, 2026; originally announced May 2026.

    Comments: This work has been submitted to the IEEE for possible publication. 9 pages + 2 pages Supplementary Information

  2. arXiv:2604.12017  [pdf

    physics.optics

    Straight Directional Couplers via Scan-Engineered Index Control

    Authors: Mohan Wang, Martin J. Booth, Patrick S. Salter

    Abstract: A novel design for straight directional waveguide couplers and interferometers is demonstrated in glass, fabricated using femtosecond laser direct writing and operating at telecommunication wavelengths (~1550 nm). The devices consisted of parallel waveguides with a spacing of 15 um, where the coupling strength was controlled by scan-engineered refractive index modulation along the length of the wa… ▽ More

    Submitted 13 April, 2026; originally announced April 2026.

  3. arXiv:2603.01835  [pdf, ps, other

    physics.geo-ph

    Consistent initialization of mixed-dimensional multiphysics models for fractured reservoirs under geomechanical constraints and field measurements

    Authors: Jakub Wiktor Both, Inga Berre

    Abstract: Modeling coupled processes in fractured porous media -- flow, deformation, fracture mechanics, and thermal/chemical effects -- often relies on mixed dimensional multiphysics formulations. These systems are nonlinear and depend on physical states and state dependent material laws. While in-situ field measurements consistently describe the deformed equilibrium configuration, computational models typ… ▽ More

    Submitted 2 March, 2026; originally announced March 2026.

  4. arXiv:2603.00572  [pdf

    physics.optics eess.SY

    Depth-adapted adaptive optics for three-photon microscopy

    Authors: Qi Hu, Jingyu Wang, Huriye Atilgan, Armin Lak, Martin J. Booth

    Abstract: Three-photon (3-P) fluorescence microscopy enables deep in vivo imaging with subcellular resolution, but its performance is fundamentally constrained by the maximum permissible laser power required to avoid tissue heating and photodamage. Under these power-limited conditions, fluorescence signal generation, image contrast, and achievable imaging depth are strongly affected by the illumination beam… ▽ More

    Submitted 3 March, 2026; v1 submitted 28 February, 2026; originally announced March 2026.

  5. arXiv:2602.24017  [pdf, ps, other

    physics.optics physics.app-ph physics.ins-det

    Tunable Dynamic Speckle Generation for Random Illumination Microscopy

    Authors: Lilian Magermans, Assia Benachir, Nathan P. Spiller, Tianxin Wang, Federico Vernuccio, Randy Bartels, Stephen M. Morris, Steve J. Elston, Martin J. Booth, Hervé Rigneault

    Abstract: Speckled illumination enhances widefield fluorescence microscopy by enabling optical sectioning and super resolution. In random illumination microscopy, sequences of speckled illumination patterns are used to excite fluorescent samples and images are reconstructed based on a statistical analysis of the intensity fluctuations. Although random illumination microscopy has been shown to give excellent… ▽ More

    Submitted 27 February, 2026; originally announced February 2026.

    Comments: 12 pages, 6 figures

    Journal ref: Advanced Materials Technologies n/a, e02098 (2026)

  6. arXiv:2601.13067  [pdf

    physics.plasm-ph physics.app-ph

    Oxygen atom density and kinetics in intermediate-pressure radiofrequency capacitively-coupled plasmas in pure O2

    Authors: Shu Zhang, Andrey Volynets, Garrett A. Curley, Jean-Paul Booth

    Abstract: We have studied radiofrequency capacitively coupled plasmas in pure O2 using single mode laser cavity ringdown spectroscopy of oxygen atoms at 630 nm. The absolute atom densities and translational temperatures were determined over a range of pressures and RF power . At pressures of 267 Pa and above, the O atom mole fraction increases with RF power and decreases with pressure, reaching a maximum of… ▽ More

    Submitted 19 January, 2026; originally announced January 2026.

  7. arXiv:2512.17546  [pdf, ps, other

    physics.optics cond-mat.mes-hall

    Enhanced and directional light emission from two-dimensional excitons using Mie voids

    Authors: Avishek Sarbajna, Ganesh Ghimire, Ilia Breev, Xavier Zambrana-Puyalto, Cheng Xiang, Alexander Huck, Timothy J. Booth, Søren Raza

    Abstract: Controlling light emission at the nanoscale has important applications in solid-state lighting, displays, and quantum light sources. Achieving this control requires both enhanced local electromagnetic fields to boost emission intensity and engineered radiation patterns to direct photons efficiently. Mie voids, consisting of an air cavity surrounded by a high-index semiconductor, are particularly s… ▽ More

    Submitted 19 December, 2025; originally announced December 2025.

  8. arXiv:2510.20614  [pdf, ps, other

    physics.flu-dyn

    Performance of an open-source image-based history matching framework for CO$_2$ storage

    Authors: David Landa-Marbán, Tor Harald Sandve, Jakub Wiktor Both, Jan Martin Nordbotten, Sarah Eileen Gasda

    Abstract: We present a history matching (HM) workflow applied to the International FluidFlower benchmark study dataset, which features high-resolution images of CO$_2$ storage in a meter-scale, geologically complex reservoir. The dataset provides dense spatial and temporal observations of fluid displacement, offering a rare opportunity to validate and enhance HM techniques for geological carbon storage (GCS… ▽ More

    Submitted 25 November, 2025; v1 submitted 23 October, 2025; originally announced October 2025.

  9. arXiv:2510.17649  [pdf, ps, other

    physics.optics

    Laser written waveguides to the sample edge

    Authors: Zhi-Kai Pong, Mohan Wang, Ji Qin, Martin J. Booth, Patrick S. Salter

    Abstract: A method is presented for fabrication of femtosecond laser written waveguides in glass to remove the need for polishing of substrates after processing. It is shown that by amplitude masking the fabrication laser beam near the sample edge and increasing the pulse energy it is possible to write waveguides that are not affected by edge aberrations and display mode profiles well matched to single mode… ▽ More

    Submitted 24 February, 2026; v1 submitted 20 October, 2025; originally announced October 2025.

  10. arXiv:2510.11422  [pdf, ps, other

    physics.app-ph physics.optics

    Raman Microspectroscopy for Real-Time Structure Indicator in Ultrafast Laser Writing

    Authors: Xingrui Cheng, Eugenio Picheo, Zhixin Chen, Martin J. Booth, Patrick S. Salter, Álvaro Fernández-Galiana

    Abstract: Femtosecond laser fabrication enables the creation of a wide range of devices, but its scalability and yield can be limited by the lack of real-time, in-situ monitoring tools. In particular, there is a strong need for metrics that directly correlate with device performance. Raman microspectroscopy provides a non-destructive route for in-situ characterization. Here, we demonstrate its potential to… ▽ More

    Submitted 8 November, 2025; v1 submitted 13 October, 2025; originally announced October 2025.

  11. arXiv:2510.05190  [pdf

    physics.flu-dyn physics.geo-ph physics.optics

    Trends in porous media laboratory imaging and open science practices

    Authors: Na Liu, Jakub Wiktor Both, Geir Ersland, Jan Martin Nordbotten, Martin Fernø

    Abstract: Understanding processes in porous media is fundamental to a broad spectrum of environmental, energy, and geoscience applications. These processes include multiphase fluid transport, interfacial dynamics, reactive transformations, and interactions with solids or microbial components, all governed by wettability, capillarity, and reactive transport at fluid-fluid and fluid-solid interfaces. Laborato… ▽ More

    Submitted 6 October, 2025; originally announced October 2025.

    Comments: Preprint submitted to Advances in Colloid and Interface Science

  12. arXiv:2509.17869  [pdf

    physics.optics

    Single image sensorless adaptive optics for microscopy

    Authors: Biwei Zhang, Qi Hu, Jingyu Wang, Martin J. Booth

    Abstract: Images obtained by microscopes are generally degraded by aberrations. Adaptive optics (AO) has been widely used in to compensate for aberrations and improve reduced image quality. Requiring no separate wavefront sensor, sensorless AO methods deduce the aberrations from a sequence of images acquired with different phase modulations. Despite that these methods are versatile and flexible, they involv… ▽ More

    Submitted 22 September, 2025; originally announced September 2025.

  13. arXiv:2508.15419  [pdf

    physics.optics

    Speckle suppression in digital in-line holographic microscopy through liquid crystal dynamic scattering

    Authors: Emilia Wdowiak, Nathan Spiller, Tianxin Wang, Camron Nourshargh, Jolanta Mierzejewska, Piotr Zdańkowski, Stephen M. Morris, Steve J. Elston, Maciej Trusiak, Martin J. Booth

    Abstract: We demonstrate speckle noise reduction in an in-line holographic imaging system using a Zwitterion-doped liquid crystal dynamic scatterer (LCDS) cell diffuser. Integrated into a minimally modified bright-field microscope, the LCDS actively modulates system's spatial coherence. The proposed solution suppresses coherent artifacts without introducing bulky moving parts, while enhancing image resoluti… ▽ More

    Submitted 21 August, 2025; originally announced August 2025.

    Comments: 4 pages, 3 figures

  14. arXiv:2508.07896  [pdf

    cond-mat.mes-hall cond-mat.mtrl-sci physics.app-ph quant-ph

    Gradient Electronic Landscapes in van der Waals Heterostructures

    Authors: Nolan Lassaline, Camilla H. Sørensen, Giulia Meucci, Sander J. Linde, Kian Latifi Yaghin, Tuan K. Chau, Damon J. Carrad, Peter Bøggild, Thomas S. Jespersen, Timothy J. Booth

    Abstract: Two-dimensional (2D) materials such as graphene and hexagonal boron nitride (hBN) provide a versatile platform for quantum electronics. Experiments generally require encapsulating graphene within hBN flakes, forming a protective van der Waals (vdW) heterostructure that preserves delicate properties of the embedded crystal. To produce functional devices, heterostructures are typically shaped by ele… ▽ More

    Submitted 11 August, 2025; originally announced August 2025.

  15. arXiv:2507.15861  [pdf

    physics.geo-ph cs.CE math.NA

    Benchmarking CO$_2$ Storage Simulations: Results from the 11th Society of Petroleum Engineers Comparative Solution Project

    Authors: Jan M. Nordbotten, Martin A. Fernø, Bernd Flemisch, Anthony R. Kovscek, Knut-Andreas Lie, Jakub W. Both, Olav Møyner, Tor Harald Sandve, Etienne Ahusborde, Sebastian Bauer, Zhangxing Chen, Holger Class, Chaojie Di, Didier Ding, David Element, Abbas Firoozabadi, Eric Flauraud, Jacques Franc, Firdovsi Gasanzade, Yousef Ghomian, Marie Ann Giddins, Christopher Green, Bruno R. B. Fernandes, George Hadjisotiriou, Glenn Hammond , et al. (18 additional authors not shown)

    Abstract: The 11th Society of Petroleum Engineers Comparative Solution Project (shortened SPE11 herein) benchmarked simulation tools for geological carbon dioxide (CO$_2$) storage. A total of 45 groups from leading research institutions and industry across the globe signed up to participate, with 18 ultimately contributing valid results that were included in the comparative study reported here. This paper… ▽ More

    Submitted 5 July, 2025; originally announced July 2025.

  16. arXiv:2507.03801  [pdf, ps, other

    physics.chem-ph physics.comp-ph quant-ph

    Invariance of quantum scattering rate coefficients to anisotropy of atom-molecule interactions

    Authors: Xuyang Guo, Kirk W. Madison, James L. Booth, Roman V. Krems

    Abstract: Quantum scattering calculations for strongly interacting molecular systems are computationally demanding due to the large number of molecular states coupled by the anisotropy of atom - molecule interactions. We demonstrate that thermal rate coefficients for total (elastic + inelastic) atom - molecule scattering are insensitive to the interaction anisotropy of the underlying potential energy surfac… ▽ More

    Submitted 2 January, 2026; v1 submitted 4 July, 2025; originally announced July 2025.

    Journal ref: Phys. Rev. A 113 (2026), 012801

  17. arXiv:2506.07482  [pdf

    physics.optics

    Information-guided optimization of image-based sensorless adaptive optics methods

    Authors: Biwei Zhang, Martin J. Booth, Qi Hu

    Abstract: Adaptive optics (AO) are reconfigurable devices that compensate for wavefront distortions or aberrations in optical systems such as microscopes, telescopes and ophthalmoscopes. Aberrations have detrimental effects that can reduce imaging quality and compromise scientific information. Sensorless AO methods were introduced to correct aberrations without a separate wavefront sensor, inferring wavefro… ▽ More

    Submitted 9 June, 2025; originally announced June 2025.

    Comments: Submitted to Optics Express

  18. arXiv:2502.02114  [pdf

    physics.optics cond-mat.mes-hall

    Fourier-Tailored Light-Matter Coupling in van der Waals Heterostructures

    Authors: Dorte R. Danielsen, Nolan Lassaline, Sander J. Linde, Magnus V. Nielsen, Xavier Zambrana-Puyalto, Avishek Sarbajna, Duc Hieu Nguyen, Timothy J. Booth, Nicolas Stenger, Søren Raza

    Abstract: Dielectric structures can support low-absorption optical modes, which are attractive for engineering light-matter interactions with excitonic resonances in two-dimensional (2D) materials. However, the coupling strength is often limited by the electromagnetic field being confined inside the dielectric, reducing spatial overlap with the active excitonic material. Here, we demonstrate a scheme for en… ▽ More

    Submitted 4 February, 2025; originally announced February 2025.

  19. arXiv:2409.18994  [pdf

    physics.soc-ph cond-mat.mtrl-sci physics.app-ph physics.data-an

    Recommendations and tools to enable reproducibility in 2D materials research

    Authors: Peter Bøggild, Timothy John Booth, Bjarke Sørensen Jessen, Abhay Shivayogimath, Nolan Lassaline, Stephan Hofmann, Kim Daasbjerg, Anders Smith, Kasper Nørgaard, Amaia Zurutuza, Terrance Barkan, Andrew J. Pollard

    Abstract: Research on 2D materials has achieved significant milestones and fuelled a rapidly growing industrial sector. This progress, however, is accompanied by challenges in reproducibility, arising from the atomic thinness, fragility, and environmental sensitivity of these materials. Subtle variations in methods or materials can lead to drastically different outcomes, undermining reliability and slowing… ▽ More

    Submitted 9 October, 2025; v1 submitted 18 September, 2024; originally announced September 2024.

    Comments: 24 pages, 2 tables, 1 figure

  20. arXiv:2409.13110  [pdf

    physics.optics

    Laser-written scalable sapphire integrated photonics platform

    Authors: Mohan Wang, Patrick S. Salter, Frank P. Payne, Tongyu Liu, Martin J. Booth, Julian A. J. Fells

    Abstract: In this paper, we demonstrate the integration of photonic devices on sapphire substrates using multi-layer depressed cladding waveguides at both 780 nm and 1550 nm. The devices are up to 10-cm long and written at depths down to 400 um. The propagation losses for single-mode guiding are ~ 0.6 dB/cm at 780 nm and ~ 0.7 dB/cm at 1550 nm. A number of structures have been fabricated with simultaneous s… ▽ More

    Submitted 19 September, 2024; originally announced September 2024.

  21. arXiv:2409.00273  [pdf, other

    physics.atom-ph physics.comp-ph quant-ph

    Boundaries of universality of thermal collisions for atom-atom scattering

    Authors: Xuyang Guo, Kirk W. Madison, James L. Booth, Roman V. Krems

    Abstract: Thermal rate coefficients for some atomic collisions have been observed to be remarkably independent of the details of interatomic interactions at short range. This makes these rate coefficients universal functions of the long-range interaction parameters and masses, which was previously exploited to develop a self-defining atomic sensor for ambient pressure. Here, we employ rigorous quantum scatt… ▽ More

    Submitted 19 December, 2024; v1 submitted 30 August, 2024; originally announced September 2024.

    Journal ref: Phys. Rev. A 110, 063317 (2024)

  22. arXiv:2406.17065  [pdf, other

    physics.atom-ph

    Revising the Universality Hypothesis for Room-temperature Collisions

    Authors: James L. Booth, Kirk W. Madison

    Abstract: Atoms constitute promising quantum sensors for a variety of scenarios including vacuum metrology. Key to this application is knowledge of the collision rate coefficient of the sensor atom with the particles being detected. Prior work demonstrated that, for room-temperature collisions, the total collision rate coefficient and the trap depth dependence of the sensor atom loss rate from shallow traps… ▽ More

    Submitted 10 September, 2024; v1 submitted 24 June, 2024; originally announced June 2024.

    Comments: 20 pages, 9 figures

  23. arXiv:2405.16289  [pdf

    physics.optics

    Intensity adaptive optics

    Authors: Zimo Zhao, Yifei Ma, Zipei Song, Jacopo Antonello, Jiahe Cui, Binguo Chen, Jingyu Wang, Bangshan Sun, Honghui He, Lin Luo, Julian A. J. Fells, Steve J. Elston, Martin J. Booth, Stephen M. Morris, Chao He

    Abstract: Adaptive optics (AO) is a powerful tool employed across various research fields, from aerospace to microscopy. Traditionally, AO has focused on correcting optical phase aberrations, with recent advances extending to polarisation compensation. However, intensity errors are also prevalent in optical systems, yet effective correction methods are still in their infancy. Here, we introduce a novel AO a… ▽ More

    Submitted 17 March, 2025; v1 submitted 25 May, 2024; originally announced May 2024.

  24. arXiv:2403.07837  [pdf, other

    physics.optics

    Topological Protection of Optical Skyrmions through Complex Media

    Authors: An Aloysius Wang, Zimo Zhao, Yifei Ma, Yuxi Cai, Runchen Zhang, Xiaoyi Shang, Yunqi Zhang, Ji Qin, Zhi Kai Pong, Tade Marozsak, Binguo Chen, Honghui He, Lin Luo, Martin J Booth, Steve J Elston, Stephen M Morris, Chao He

    Abstract: Optical Skyrmions have many important properties that make them ideal units for high-density data applications, including the ability to carry digital information through a discrete topological number and the independence of spatially varying polarization to other dimensions. More importantly, the topological nature of the optical Skyrmion heuristically suggests a strong degree of robustness to pe… ▽ More

    Submitted 6 August, 2024; v1 submitted 12 March, 2024; originally announced March 2024.

  25. arXiv:2312.15446  [pdf, other

    physics.atom-ph

    Cross-calibration of atomic sensors for pressure metrology

    Authors: Erik Frieling, Riley A. Stewart, James L. Booth, Kirk W. Madison

    Abstract: Atomic sensors have shown great promise for density and pressure metrology in the high, ultra-high, and extremely-high vacuum regimes. Specifically, the density of background gas particles in vacuum can be determined by measuring the collision rate between the particles and an ensemble of sensor atoms. This requires preparing the sensor atoms in a particular quantum state, observing the rate of ch… ▽ More

    Submitted 2 April, 2024; v1 submitted 24 December, 2023; originally announced December 2023.

    Comments: 17 pages, 7 figures

  26. arXiv:2312.14842  [pdf, other

    physics.flu-dyn

    High-fidelity experimental model verification for flow in fractured porous media

    Authors: Jakub Wiktor Both, Bergit Brattekås, Martin Fernø, Eirik Keilegavlen, Jan Martin Nordbotten

    Abstract: Mixed-dimensional mathematical models for flow in fractured media have been prevalent in the modeling community for almost two decades, utilizing the explicit representation of fractures by lower-dimensional manifolds embedded in the surrounding porous media. In this work, for the first time, direct qualitative and quantitative comparisons of mixed-dimensional models are drawn against laboratory e… ▽ More

    Submitted 22 December, 2023; originally announced December 2023.

  27. arXiv:2311.18148  [pdf

    physics.optics

    A reconfigurable arbitrary retarder array as complex structured matter

    Authors: Chao He, Binguo Chen, Zipei Song, Zimo Zhao, Yifei Ma, Honghui He, Lin Luo, Tade Marozsak, An Wang, Rui Xu, Peixiang Huang, Jiawen Li, Xuke Qiu, Yunqi Zhang, Bangshan Sun, Jiahe Cui, Yuxi Cai, Yun Zhang, Andong Wang, Mohan Wang, Patrick Salter, Julian AJ Fells, Ben Dai, Shaoxiong Liu, Limei Guo , et al. (9 additional authors not shown)

    Abstract: Tuneable retarder arrays, such as spatially patterned liquid crystal devices, have given rise to impressive photonic functionality, fuelling diverse applications ranging from microscopy and holography to encryption and communications. Presently these solutions are limited by the controllable degrees of freedom of structured matter, hindering applications that demand photonic systems with high flex… ▽ More

    Submitted 19 July, 2025; v1 submitted 29 November, 2023; originally announced November 2023.

  28. Polarization based modulation of splitting ratio in femtosecond laser direct written directional couplers

    Authors: Zhi-Kai Pong, Bangshan Sun, Patrick S. Salter, Martin J. Booth

    Abstract: This work characterizes a phenomenon in direct laser written directional couplers where the splitting ratio for output light is dependent on the input polarization state. In general, for laser written waveguides, different coupling strengths exist for different polarization states of the input light. If the linear polarization state of the input light is not aligned with one of the symmetry axes o… ▽ More

    Submitted 4 December, 2023; v1 submitted 20 November, 2023; originally announced November 2023.

    Journal ref: Optics Communications (2025) Vol. 575 Pages 131303

  29. arXiv:2310.13419  [pdf, other

    quant-ph physics.atom-ph physics.optics

    Low Cross-Talk Optical Addressing of Trapped-Ion Qubits Using a Novel Integrated Photonic Chip

    Authors: A. S. Sotirova, B. Sun, J. D. Leppard, A. Wang, M. Wang, A. Vazquez-Brennan, D. P. Nadlinger, S. Moser, A. Jesacher, C. He, F. Pokorny, M. J. Booth, C. J. Ballance

    Abstract: Individual optical addressing in chains of trapped atomic ions requires generation of many small, closely spaced beams with low cross-talk. Furthermore, implementing parallel operations necessitates phase, frequency, and amplitude control of each individual beam. Here we present a scalable method for achieving all of these capabilities using a novel integrated photonic chip coupled to a network of… ▽ More

    Submitted 20 October, 2023; originally announced October 2023.

    Comments: 14 pages, 12 figures

  30. arXiv:2310.07479  [pdf, ps, other

    physics.optics cond-mat.mtrl-sci

    Terahertz s-SNOM reveals nonlocal nanoscale conductivity of graphene

    Authors: Henrik B. Lassen, William V. Carstensen, Leonid Iliushyn, Timothy J. Booth, Peter Bøggild, Edmund J. R. Kelleher, Peter U. Jepsen

    Abstract: As photonic and electronic technologies approach nanometre length scales and terahertz operating speeds, electrical conductivity can no longer be treated as a purely local material parameter. In this regime, charge transport becomes intrinsically nonlocal, with conductivity depending on both frequency and momentum, $σ(ω,q)$, fundamentally limiting field confinement, dispersion, and loss in nanosca… ▽ More

    Submitted 13 February, 2026; v1 submitted 11 October, 2023; originally announced October 2023.

  31. Trapped particle evolution driven by residual gas collisions

    Authors: Avinash Deshmukh, Riley A. Stewart, Pinrui Shen, James L. Booth, Kirk W. Madison

    Abstract: We present a comprehensive mathematical model and experimental measurements for the evolution of a trapped particle ensemble driven by collisions with a room-temperature background vapor. The model accommodates any trap geometry, confining potential, initial trapped distribution, and other experimental details; it only depends on the the probability distribution function $P_t(E)$ for the collision… ▽ More

    Submitted 28 May, 2024; v1 submitted 6 October, 2023; originally announced October 2023.

    Comments: 14 pages, 6 figures

    Journal ref: Phys. Rev. A Vol. 109, Iss. 3 March 2024

  32. arXiv:2309.04481  [pdf

    physics.optics physics.app-ph

    High-precision optical fiber sensing beyond 1000°C

    Authors: Mohan Wang, Patrick S. Salter, Frank P. Payne, Adrian Shipley, Igor N. Dyson, Tongyu Lui, 1tao Wang, Kaihui Zhang, Jian Zhang, Zhitai Jia, Stephen M. Morris, Martin J. Booth, Julian A. J. Fells

    Abstract: Sapphire fiber can withstand around 2000°C, but it is multimoded, giving poor precision sensors. We demonstrate a single-mode sapphire fiber Bragg grating temperature sensor operating up to 1200°C. The repeatability above 1000°C is within {\pm}0.08%.

    Submitted 14 August, 2023; originally announced September 2023.

    Comments: 4 Pages, 5 Figures

  33. arXiv:2307.14451  [pdf

    physics.optics physics.app-ph

    High Speed Precise Refractive Index Modification for Photonic Chips through Phase Aberrated Pulsed Lasers

    Authors: Bangshan Sun, Simon Moser, Alexander Jesacher, Patrick S. Salter, Robert R. Thomson, Martin J. Booth

    Abstract: Integrated photonic chips have significant potential in telecommunications, classic computing, quantum systems, and topological photonics. Direct laser writing offers unique capability for creating three-dimensional photonic devices in an optical glass chip with quick prototyping. However, existing laser writing schemes cannot create index-modified structures in glass that precisely match the lase… ▽ More

    Submitted 26 July, 2023; originally announced July 2023.

  34. arXiv:2305.10515  [pdf, other

    hep-ex physics.ins-det

    The LHCb upgrade I

    Authors: LHCb collaboration, R. Aaij, A. S. W. Abdelmotteleb, C. Abellan Beteta, F. Abudinén, C. Achard, T. Ackernley, B. Adeva, M. Adinolfi, P. Adlarson, H. Afsharnia, C. Agapopoulou, C. A. Aidala, Z. Ajaltouni, S. Akar, K. Akiba, P. Albicocco, J. Albrecht, F. Alessio, M. Alexander, A. Alfonso Albero, Z. Aliouche, P. Alvarez Cartelle, R. Amalric, S. Amato , et al. (1298 additional authors not shown)

    Abstract: The LHCb upgrade represents a major change of the experiment. The detectors have been almost completely renewed to allow running at an instantaneous luminosity five times larger than that of the previous running periods. Readout of all detectors into an all-software trigger is central to the new design, facilitating the reconstruction of events at the maximum LHC interaction rate, and their select… ▽ More

    Submitted 10 September, 2024; v1 submitted 17 May, 2023; originally announced May 2023.

    Comments: All figures and tables, along with any supplementary material and additional information, are available at http://lhcbproject.web.cern.ch/lhcbproject/Publications/LHCbProjectPublic/LHCb-DP-2022-002.html (LHCb public pages)

    Report number: LHCb-DP-2022-002

    Journal ref: JINST 19 (2024) P05065

  35. Topologically controlled multiskyrmions in photonic gradient-index lenses

    Authors: Yijie Shen, Chao He, Zipei Song, Binguo Chen, Honghui He, Yifei Ma, Julian A. J. Fells, Steve J. Elston, Stephen M. Morris, Martin J. Booth, Andrew Forbes

    Abstract: Skyrmions are topologically protected quasiparticles, originally studied in condensed-matter systems and recently in photonics, with great potential in ultra-high-capacity information storage. Despite the recent attention, most optical solutions require complex and expensive systems yet produce limited topologies. Here we demonstrate an extended family of quasiparticles beyond normal skyrmions, wh… ▽ More

    Submitted 13 April, 2023; originally announced April 2023.

  36. arXiv:2301.07347  [pdf

    physics.geo-ph

    Physical variability in meter-scale laboratory CO$_2$ injections in faulted geometries

    Authors: Malin Haugen, Lluis Salo-Salgado, Kristoffer Eikehaug, Benyamine Benali, Jakub W. Both, Erlend Storvik, Olav Folkvord, Ruben Juanes, Jan Martin Nordbotten, Martin A. Ferno

    Abstract: Carbon, capture, and storage (CCS) is an important bridging technology to combat climate change in the transition towards net-zero. The FluidFlower concept has been developed to visualize and study CO$_2$ flow and storage mechanisms in sedimentary systems in a laboratory setting. Meter-scale multiphase flow in two geological geometries, including normal faults with and without smearing, is studied… ▽ More

    Submitted 18 January, 2023; originally announced January 2023.

    Comments: manuscript + supplementary material

  37. arXiv:2301.06397  [pdf

    physics.geo-ph

    Room-scale CO2 injections in a physical reservoir model with faults

    Authors: Martin A. Ferno, Malin Haugen, Kristoffer Eikehaug, Olav Folkvord, Benyamine Benali, Jakub W. Both, Erlend Storvik, Casey W. Nixon, Robert L. Gawthrope, Jan Martin Nordbotten

    Abstract: We perform a series of repeated CO2 injections in a room-scale physical model of a faulted geological cross-section. Relevant parameters for subsurface carbon sequestration, including multiphase flows, capillary CO2 trapping, dissolution, and convective mixing, are studied and quantified. As part of a forecasting benchmark study, we address and quantify six predefined metrics for storage capacity… ▽ More

    Submitted 16 January, 2023; originally announced January 2023.

    Comments: Supplementary materials included

  38. arXiv:2301.02647  [pdf, other

    eess.IV eess.SY physics.optics

    Universal adaptive optics for microscopy through embedded neural network control

    Authors: Qi Hu, Martin Hailstone, Jingyu Wang, Matthew Wincott, Danail Stoychev, Huriye Atilgan, Dalia Gala, Tai Chaiamarit, Richard M. Parton, Jacopo Antonello, Adam M. Packer, Ilan Davis, Martin J. Booth

    Abstract: The resolution and contrast of microscope imaging is often affected by aberrations introduced by imperfect optical systems and inhomogeneous refractive structures in specimens. Adaptive optics (AO) compensates these aberrations and restores diffraction limited performance. A wide range of AO solutions have been introduced, often tailored to a specific microscope type or application. Until now, a u… ▽ More

    Submitted 25 April, 2023; v1 submitted 6 January, 2023; originally announced January 2023.

    Comments: 27 pages, 12 figures

  39. arXiv:2212.00865  [pdf, other

    physics.flu-dyn

    PoroTwin: A digital twin for a FluidFlower rig

    Authors: Eirik Keilegavlen, Eivind Fonn, Kjetil Johannessen, Kristoffer Eikehaug, Jakub Both, Martin Fernø, Trond Kvamsdal, Adil Rasheed, Jan M. Nordbotten

    Abstract: We present a framework for integrated experiments and simulations of tracer transport in heterogeneous porous media using digital twin technology. The physical asset in our setup is a meter-scale FluidFlower rig. The digital twin consists of a traditional physics-based forward simulation tool and a correction technique which compensates for mismatches between simulation results and observations. T… ▽ More

    Submitted 6 January, 2023; v1 submitted 1 December, 2022; originally announced December 2022.

  40. arXiv:2209.13988  [pdf, other

    physics.optics

    Direct laser written aperiodic photonic volume elements for complex light shaping with high efficiency: inverse design and fabrication

    Authors: Nicolas Barré, Ravi Shivaraman, Simon Moser, Patrick Salter, Michael Schmidt, Martin J. Booth, Alexander Jesacher

    Abstract: Light plays the central role in many applications. The key to unlocking its versatility lies in shaping it into the most appropriate form for the task at hand. Specifically tailored refractive index modifications, directly manufactured inside glass using a short pulsed laser, enable an almost arbitrary control of the light flow. However, the stringent requirements for quantitative knowledge of the… ▽ More

    Submitted 22 November, 2022; v1 submitted 28 September, 2022; originally announced September 2022.

  41. arXiv:2209.02900  [pdf, other

    physics.atom-ph quant-ph

    Cross-calibration of atomic pressure sensors and deviation from quantum diffractive collision universality for light particles

    Authors: Pinrui Shen, Erik Frieling, Katherine R. Herperger, Denis Uhland, Riley A. Stewart, Avinash Deshmukh, Roman V. Krems, James L. Booth, Kirk W. Madison

    Abstract: The total room-temperature, velocity-averaged cross section for atom-atom and atom-molecule collisions is well approximated by a universal function depending only on the magnitude of the leading order dispersion coefficient, $C_6$. This feature of the total cross section together with the universal function for the energy distribution transferred by glancing angle collisions ($P_{\rm{QDU}6}$) can… ▽ More

    Submitted 12 September, 2022; v1 submitted 6 September, 2022; originally announced September 2022.

    Comments: 14 pages, 9 figures

  42. Measurement of Rb-Rb van der Waals coefficient via Quantum Diffractive Universality

    Authors: Riley A. Stewart, Pinrui Shen, James L. Booth, Kirk W. Madison

    Abstract: Collisions between trapped atoms or trapped molecules with room temperature particles in the surrounding vacuum induce loss of the trapped population at a rate proportional to the density of the background gas particles. The total velocity-averaged loss rate coefficient $\langle σ_\mathrm{tot} v \rangle$ for such collisions and the variation of the loss rate with trap depth has been shown to depen… ▽ More

    Submitted 26 August, 2022; originally announced August 2022.

    Comments: 9 pages, 4 figures

  43. Fermi Level Depinning in Two-Dimensional Materials Using a Fluorinated Bilayer Graphene Barrier

    Authors: Cunzhi Sun, Cheng Xiang, Rongdun Hong, Feng Zhang, Timothy J. Booth, Peter Bøggild, Manh-Ha Doan

    Abstract: Strong Fermi level pinning (FLP) - often attributed to metal-induced gap states at the interfacial contacts - severely reduces the tunability of the Schottky barrier height of the junction and limits applications of the 2D materials in electronics and optoelectronics. Here, we show that fluorinated bilayer graphene (FBLG) can be used as a barrier to effectively prevent FLP at metal/2D materials in… ▽ More

    Submitted 2 August, 2022; originally announced August 2022.

  44. arXiv:2112.12671  [pdf

    physics.optics physics.app-ph

    Single-mode sapphire fiber Bragg grating

    Authors: Mohan Wang, Patrick S. Salter, Frank P. Payne, Adrian Shipley, Stephen M. Morris, Martin J. Booth, Julian A. J. Fells

    Abstract: We present here the inscription of single-mode waveguides with Bragg gratings in sapphire. The waveguide Bragg gratings have a novel multi-layer depressed cladding design in the 1550 nm telecommunications waveband. The Bragg gratings have a narrow bandwidth (<0.5 nm) and have survived annealing at 1000°C. The structures are inscribed with femtosecond laser direct writing, using adaptive beam shapi… ▽ More

    Submitted 23 December, 2021; originally announced December 2021.

    Comments: Submitted to Optica 12 November 2021

  45. arXiv:2112.10576  [pdf, other

    physics.ins-det

    SenAOReFoc: A Closed-Loop Sensorbased Adaptive Optics and Remote Focusing Control Software

    Authors: Jiahe Cui, Karen M. Hampson, Matthew Wincott, Martin J. Booth

    Abstract: SenAOReFoc is a closed-loop sensorbased adaptive optics (AO) and remote focusing control software that works with a deformable mirror (DM) and a Shack-Hartmann wavefront sensor (SHWS). It is programmed in Python and is open-source on Github https://github.com/jiahecui/SenAOReFoc. A detailed user guide can be found in the Github repository. Here, we give a brief summary of basic software functional… ▽ More

    Submitted 17 December, 2021; originally announced December 2021.

  46. arXiv:2112.02688  [pdf

    physics.optics physics.app-ph

    On-chip beam rotators, adiabatic mode converters, and waveplates through low-loss waveguides with variable cross-sections

    Authors: Bangshan Sun, Fyodor Morozko, Patrick S. Salter, Simon Moser, Zhikai Pong, Raj B. Patel, Ian A. Walmsley, Mohan Wang, Adir Hazan, Nicolas Barre, Alexander Jesacher, Julian Fells, Chao He, Aviad Katiyi, ZhenNan Tian, Alina Karabchevsky, Martin J. Booth

    Abstract: Photonics integrated circuitry would benefit considerably from the ability to arbitrarily control waveguide cross-sections with high precision and low loss, in order to provide more degrees of freedom in manipulating propagating light. Here, we report a new method for femtosecond laser writing of optical-fibre-compatible glass waveguides, namely spherical phase induced multi-core waveguide (SPIM-W… ▽ More

    Submitted 14 July, 2022; v1 submitted 5 December, 2021; originally announced December 2021.

    Comments: Published in Nature: Light Science & Applications

    Journal ref: Light: Science & Applications (2022) 11:214

  47. arXiv:2110.03499  [pdf

    cond-mat.mtrl-sci cond-mat.mes-hall physics.app-ph

    Super-Resolution Nanolithography of Two-Dimensional Materials by Anisotropic Etching

    Authors: Dorte R. Danielsen, Anton Lyksborg-Andersen, Kirstine E. S. Nielsen, Bjarke S. Jessen, Timothy J. Booth, Manh-Ha Doan, Yingqiu Zhou, Peter Bøggild, Lene Gammelgaard

    Abstract: Nanostructuring allows altering of the electronic and photonic properties of two-dimensional (2D) materials. The efficiency, flexibility, and convenience of top-down lithography processes are however compromised by nm-scale edge roughness and resolution variability issues, which especially affects the performance of 2D materials. Here we study how dry anisotropic etching of multilayer 2D materials… ▽ More

    Submitted 7 October, 2021; originally announced October 2021.

    Journal ref: ACS Appl. Mater. Interfaces 2021, 13, 35

  48. arXiv:2110.02606  [pdf

    physics.optics

    Vectorial adaptive optics

    Authors: Chao He, Jacopo Antonello, Martin J. Booth

    Abstract: Adaptive optics normally concerns the feedback correction of phase aberrations. Such correction has been of benefit in various optical systems, with applications ranging in scale from astronomical telescopes to super-resolution microscopes. Here we extend this powerful tool into the vectorial domain, encompassing higher-dimensional feedback correction of both polarisation and phase. This technique… ▽ More

    Submitted 6 October, 2021; originally announced October 2021.

  49. arXiv:2108.04571  [pdf

    physics.optics

    Polarisation optics for biomedical and clinical applications: a review

    Authors: Chao He, Honghui He, Jintao Chang, Binguo Chen, Hui Ma, Martin J. Booth

    Abstract: Many polarisation techniques have been harnessed for decades in biological and clinical research, each based upon measurement of the vectorial properties of light or the vectorial transformations imposed on light by objects. Various advanced vector measurement/sensing techniques, physical interpretation methods, and approaches to analyse biomedically relevant information have been developed and ha… ▽ More

    Submitted 10 August, 2021; originally announced August 2021.

  50. arXiv:2107.09624  [pdf

    physics.optics

    Revealing complex optical phenomena through vectorial metrics

    Authors: Chao He, Jintao Chang, Patrick S. Salter, Yuanxing Shen, Ben Dai, Pengcheng Li, Yihan Jin, Samlan Chandran Thodika, Mengmeng Li, Aziz Tariq, Jingyu Wang, Jacopo Antonello, Yang Dong, Ji Qi, Jianyu Lin, Honghui He, Daniel S. Elson, Min Zhang, Hui Ma, Martin J. Booth

    Abstract: Advances in vectorial polarisation-resolved imaging are bringing new capabilities to applications ranging from fundamental physics through to clinical diagnosis. Imaging polarimetry requires determination of the Mueller matrix (MM) at every point, providing a complete description of an object's vectorial properties. Despite forming a comprehensive representation, the MM does not usually provide ea… ▽ More

    Submitted 21 July, 2021; v1 submitted 20 July, 2021; originally announced July 2021.