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Showing 1–17 of 17 results for author: Oblak, D

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  1. arXiv:2603.26630  [pdf, ps, other

    physics.bio-ph physics.optics q-bio.NC

    Revisiting claims of extracranial biophoton detection from the human brain

    Authors: Vahid Salari, Vishnu Seshan, Rishabh Rishabh, Daniel Oblak, Christoph Simon

    Abstract: Ultraweak photon emission, also referred to as biological autoluminescence or biophoton emission, is the spontaneous emission of extremely low levels of light from a broad range of biological systems. Recent studies have reported that UPE measured extracranially can serve as a potential non-invasive biomarker of brain activity. Here, we show that this interpretation suffers from serious problems.… ▽ More

    Submitted 26 May, 2026; v1 submitted 27 March, 2026; originally announced March 2026.

    Comments: 8 pages (single-column), 5 figures

  2. arXiv:2511.03935  [pdf, ps, other

    quant-ph physics.optics

    Quantum Optical Techniques for Biomedical Imaging

    Authors: Vahid Salari, Yingwen Zhang, Sepideh Ahmadi, Dilip Paneru, Duncan England, Shabir Barzanjeh, Robert Boyd, Ebrahim Karimi, Christoph Simon, Daniel Oblak

    Abstract: Quantum imaging is emerging as a transformative approach for biomedical applications, applying nonclassical properties of light, such as entanglement, squeezing, and quantum correlations, to overcome fundamental limits of conventional techniques. These methods promise superior spatial resolution, enhanced signal-to-noise ratios, improved phase sensitivity, and reduced radiation dose, for potential… ▽ More

    Submitted 5 November, 2025; originally announced November 2025.

    Comments: 20 pages, 8 figures

  3. arXiv:2508.01416  [pdf, ps, other

    quant-ph physics.app-ph physics.optics

    Erbium-Doped Fibre Quantum Memory for Chip-Integrated Quantum-Dot Single Photons at 980 nm

    Authors: Nasser Gohari Kamel, Arsalan Mansourzadeh, Ujjwal Gautam, Vinaya Kumar Kavatamane, Ashutosh Singh, Edith Yeung, David B. Northeast, Paul Barclay, Philip J. Poole, Dan Dalacu, Daniel Oblak

    Abstract: The realization of long-distance quantum communication and the envisioned quantum internet relies on coherent hybrid light-matter interfaces connecting quantum light emitters with quantum memory (QM) systems. Unlike probabilistic photon pair sources such as spontaneous parametric down-conversion, deterministic quantum light emitters enable the on-demand production of pure and bright single and ent… ▽ More

    Submitted 2 August, 2025; originally announced August 2025.

  4. arXiv:2412.14944  [pdf, other

    quant-ph physics.optics physics.space-ph

    Estimating the impact of light pollution on quantum communication between QEYSSat and Canadian quantum ground station sites

    Authors: Mathew Yastremski, Paul J. Godin, Nouralhoda Bayat, Sungeun Oh, Ziheng Chang, Katanya B. Kuntz, Daniel Oblak, Thomas Jennewein

    Abstract: Satellite to ground quantum communication typically operates at night to reduce background signals, however it remains susceptible to noise from light pollution of the night sky. In this study we compare several methodologies for determining whether a Quantum Ground Station (QGS) site is viable for exchanging quantum signals with the upcoming Quantum Encryption and Science Satellite (QEYSSat) miss… ▽ More

    Submitted 19 December, 2024; originally announced December 2024.

    Comments: Submitted to EPJ: Prospects for Space Quantum Research, 20 pages, 12 figures

  5. arXiv:2406.08167  [pdf, other

    quant-ph physics.app-ph physics.optics

    Optical Investigations of Coherence and Relaxation Dynamics of a Thulium-doped Yttrium Gallium Garnet Crystal at sub-Kelvin Temperatures for Optical Quantum Memory

    Authors: Antariksha Das, Mohsen Falamarzi Askarani, Jacob H. Davidson, Neil Sinclair, Joshua A. Slater, Sara Marzban, Daniel Oblak, Charles W. Thiel, Rufus L. Cone, Wolfgang Tittel

    Abstract: Rare-earth ion-doped crystals are of great interest for quantum memories, a central component in future quantum repeaters. To assess the promise of 1$\%$ Tm$^{3+}$-doped yttrium gallium garnet (Tm:YGG), we report measurements of optical coherence and energy-level lifetimes of its $^3$H$_6$ $\leftrightarrow$ $^3$H$_4$ transition at a temperature of around 500 mK and various magnetic fields. Using s… ▽ More

    Submitted 12 June, 2024; originally announced June 2024.

  6. arXiv:2203.03127  [pdf, other

    quant-ph physics.ins-det

    Picosecond synchronization system for quantum networks

    Authors: Raju Valivarthi, Lautaro Narváez, Samantha I. Davis, Nikolai Lauk, Cristián Peña, Si Xie, Jason P. Allmaras, Andrew D. Beyer, Boris Korzh, Andrew Mueller, Mandy Rominsky, Matthew Shaw, Emma E. Wollman, Panagiotis Spentzouris, Daniel Oblak, Neil Sinclair, Maria Spiropulu

    Abstract: The operation of long-distance quantum networks requires photons to be synchronized and must account for length variations of quantum channels. We demonstrate a 200 MHz clock-rate fiber optic-based quantum network using off-the-shelf components combined with custom-made electronics and telecommunication C-band photons. The network is backed by a scalable and fully automated synchronization system… ▽ More

    Submitted 6 March, 2022; originally announced March 2022.

    Comments: 7 pages, 7 figures

  7. arXiv:2112.01249  [pdf, other

    q-bio.NC physics.bio-ph physics.med-ph physics.optics quant-ph

    Are Brain-Computer Interfaces Feasible with Integrated Photonic Chips?

    Authors: Vahid Salari, Serafim Rodrigues, Erhan Saglamyurek, Christoph Simon, Daniel Oblak

    Abstract: The present paper examines the viability of a radically novel idea for brain-computer interface (BCI), which could lead to novel technological, experimental and clinical applications. BCIs are computer-based systems that enable either one-way or two-way communication between a living brain and an external machine. BCIs read-out brain signals and transduce them into task commands, which are perform… ▽ More

    Submitted 21 November, 2021; originally announced December 2021.

    Comments: 17 pages, 7 figures. Submitted to "Frontiers in Neuroscience". Comments are welcome

  8. arXiv:2106.06113  [pdf, other

    quant-ph physics.comp-ph physics.optics

    Sample-efficient adaptive calibration of quantum networks using Bayesian optimization

    Authors: Cristian L. Cortes, Pascal Lefebvre, Nikolai Lauk, Michael J. Davis, Neil Sinclair, Stephen K. Gray, Daniel Oblak

    Abstract: Indistinguishable photons are imperative for advanced quantum communication networks. Indistinguishability is difficult to obtain because of environment-induced photon transformations and loss imparted by communication channels, especially in noisy scenarios. Strategies to mitigate these transformations often require hardware or software overhead that is restrictive (e.g. adding noise), infeasible… ▽ More

    Submitted 10 June, 2021; originally announced June 2021.

  9. arXiv:2106.02530  [pdf, other

    quant-ph physics.app-ph physics.optics

    A long-lived solid-state optical quantum memory for high-rate quantum repeaters

    Authors: Mohsen Falamarzi Askarani, Antariksha Das, Jacob H. Davidson, Gustavo C. Amaral, Neil Sinclair, Joshua A. Slater, Sara Marzban, Charles W. Thiel, Rufus L. Cone, Daniel Oblak, Wolfgang Tittel

    Abstract: We argue that long optical storage times are required to establish entanglement at high rates over large distances using memory-based quantum repeaters. Triggered by this conclusion, we investigate the $^3$H$_6$ $\leftrightarrow$ $^3$H$_4$ transition at 795.325 nm of Tm:Y$_3$Ga$_5$O$_{12}$ (Tm:YGG). Most importantly, we show that the optical coherence time can reach 1.1 ms, and, using laser pulses… ▽ More

    Submitted 4 June, 2021; originally announced June 2021.

    Comments: 6 pages, 4 figures

    Journal ref: Phys. Rev. Lett. 127, 220502 (2021)

  10. arXiv:2101.08863  [pdf, other

    physics.atom-ph quant-ph

    Optical coherence and energy-level properties of a Tm$^{3+}$-doped LiNbO$_{3}$ waveguide at sub-Kelvin temperatures

    Authors: Neil Sinclair, Daniel Oblak, Erhan Saglamyurek, Rufus L. Cone, Charles W. Thiel, Wolfgang Tittel

    Abstract: We characterize the optical coherence and energy-level properties of the 795 nm $^3$H$_6$ to $^3$H$_4$ transition of Tm$^{3+}$ in a Ti$^{4+}$:LiNbO$_{3}$ waveguide at temperatures as low as 0.65 K. Coherence properties are measured with varied temperature, magnetic field, optical excitation power and wavelength, and measurement time-scale. We also investigate nuclear spin-induced hyperfine structu… ▽ More

    Submitted 21 January, 2021; originally announced January 2021.

    Comments: 15 pages, 15 figures

    Journal ref: Phys. Rev. B 103, 134105 (2021)

  11. arXiv:2001.11456  [pdf, other

    quant-ph physics.optics

    Improved Light-Matter Interaction for Storage of Quantum States of Light in a Thulium-Doped Crystal Cavity

    Authors: Jacob H. Davidson, Pascal Lefebvre, Jun Zhang, Daniel Oblak, Wolfgang Tittel

    Abstract: We design and implement an atomic frequency comb quantum memory for 793 nm wavelength photons using a monolithic cavity based on a thulium-doped Y$_3$Al$_5$O$_{12}$ (Tm:YAG) crystal. Approximate impedance matching results in the absorption of approximately $90\%$ of input photons and a memory efficiency of (27.5$\pm$ 2.7)% over a 500 MHz bandwidth. The cavity enhancement leads to a significant imp… ▽ More

    Submitted 30 January, 2020; originally announced January 2020.

    Journal ref: Phys. Rev. A 101, 042333 (2020)

  12. arXiv:1703.04709  [pdf, other

    quant-ph physics.atom-ph physics.optics

    Entanglement between more than two hundred macroscopic atomic ensembles in a solid

    Authors: P. Zarkeshian, C. Deshmukh, N. Sinclair, S. K. Goyal, G. H. Aguilar, P. Lefebvre, M. Grimau Puigibert, V. B. Verma, F. Marsili, M. D. Shaw, S. W. Nam, K. Heshami, D. Oblak, W. Tittel, C. Simon

    Abstract: We create a multi-partite entangled state by storing a single photon in a crystal that contains many large atomic ensembles with distinct resonance frequencies. The photon is re-emitted at a well-defined time due to an interference effect analogous to multi-slit diffraction. We derive a lower bound for the number of entangled ensembles based on the contrast of the interference and the single-photo… ▽ More

    Submitted 14 March, 2017; originally announced March 2017.

    Comments: 10 pages, 8 figures; see also parallel submission by Frowis et al

    Journal ref: Nature Communications 8, 906 (2017)

  13. arXiv:1506.04431  [pdf, other

    quant-ph physics.atom-ph physics.optics

    A telecom-wavelength atomic quantum memory in optical fiber for heralded polarization qubits

    Authors: Jeongwan Jin, Erhan Saglamyurek, Marcel. li Grimau Puigibert, Varun B. Verma, Francesco Marsili, Sae Woo Nam, Daniel Oblak, Wolfgang Tittel

    Abstract: Photon-based quantum information processing promises new technologies including optical quantum computing, quantum cryptography, and distributed quantum networks. Polarization-encoded photons at telecommunication wavelengths provide a compelling platform for practical realization of these technologies. However, despite important success towards building elementary components compatible with this p… ▽ More

    Submitted 14 June, 2015; originally announced June 2015.

    Comments: The first two authors contributed equally to this work

    Journal ref: Phys. Rev. Lett. 115, 140501 (2015)

  14. arXiv:1409.0831  [pdf, other

    quant-ph cond-mat.mtrl-sci physics.atom-ph physics.optics

    Quantum storage of entangled telecom-wavelength photons in an erbium-doped optical fibre

    Authors: Erhan Saglamyurek, Jeongwan Jin, Varun B. Verma, Matthew D. Shaw, Francesco Marsili, Sae Woo Nam, Daniel Oblak, Wolfgang Tittel

    Abstract: The realization of a future quantum Internet requires processing and storing quantum information at local nodes, and interconnecting distant nodes using free-space and fibre-optic links. Quantum memories for light are key elements of such quantum networks. However, to date, neither an atomic quantum memory for non-classical states of light operating at a wavelength compatible with standard telecom… ▽ More

    Submitted 13 January, 2015; v1 submitted 2 September, 2014; originally announced September 2014.

    Comments: 6 pages, 3 Figures + Supplementary Information. The problem with the order of the references is fixed. appears in Nature Photonics (2015)

    Journal ref: Nature Photonics 9, 83-87, 2015

  15. arXiv:1208.1415  [pdf, other

    quant-ph physics.atom-ph

    Towards quantum state tomography of a single polariton state of an atomic ensemble

    Authors: S. L. Christensen, J. B. Béguin, H. L. Sørensen, E. Bookjans, D. Oblak, J. H. Müller, J. Appel, E. S. Polzik

    Abstract: We present a proposal and a feasibility study for the creation and quantum state tomography of a single polariton state of an atomic ensemble. The collective non-classical and non-Gaussian state of the ensemble is generated by detection of a single forward scattered photon. The state is subsequently characterized by atomic state tomography performed using strong dispersive light-atoms interaction… ▽ More

    Submitted 30 October, 2012; v1 submitted 7 August, 2012; originally announced August 2012.

    Journal ref: 2013 New J. Phys. 15 015002

  16. arXiv:physics/0701251  [pdf, ps, other

    physics.ins-det

    Compensation of eddy-current-induced magnetic field transients in a MOT

    Authors: Carlos L. Garrido Alzar, Plamen G. Petrov, Daniel Oblak, Joerg H. Mueller, Eugene S. Polzik

    Abstract: The design and implementation of a current driver for the quadrupole coil of a magneto-optical trap are presented. The control and the power stages of the driver, both based on a push-pull configuration with high-speed transistors, are separated, allowing for a protection of the control electronics. Moreover, the coil current can be set by an analog voltage, a feature that makes possible both fa… ▽ More

    Submitted 22 January, 2007; originally announced January 2007.

    Comments: 14 pages, 8 figures

  17. arXiv:physics/0403138  [pdf, ps, other

    physics.atom-ph quant-ph

    Diffraction effects on light-atomic ensemble quantum interface

    Authors: J. H. Mueller, P. Petrov, D. Oblak, C. L. Garrido Alzar, S. R. de Echaniz, E. S. Polzik

    Abstract: We present a simple method to include the effects of diffraction into the description of a light-atomic ensemble quantum interface in the context of collective variables. Carrying out a scattering calculation we single out the purely geometrical effect. We apply our method to the experimentally relevant case of Gaussian shaped atomic samples stored in single beam optical dipole traps and probed… ▽ More

    Submitted 29 March, 2004; originally announced March 2004.

    Comments: 13 pages, 7 figures, comments welcome