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Showing 1–16 of 16 results for author: Vincent, P

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  1. arXiv:2607.25409  [pdf, ps, other

    physics.plasm-ph

    Polaris: a flexible stellarator demonstration experiment with simple modular coils

    Authors: Simon P. H. Vincent, Joaquim Loizu, Matthieu Toussaint, Rémy Jacquier, Jérémy Salm, Philippe Guittienne, Matias Habib, Idil Sonmez, Christopher B. Smiet, Erol Balkovic, Rogerio Jorge, Alan G. Goodman, Ivo Furno, Christian Moura, William Matthey-Dorey, Steve Couturier, Frédéric Dolizy

    Abstract: We present the design, construction, and first plasma experiments of Polaris, a new small-scale stellarator experiment (major radius R ~ 0.4 m) located at the Swiss Plasma Center. Polaris consists of a relatively large vacuum vessel (~0.5 m^3) predominantly made of glass windows and inside which different sets of magnetic coils can be installed. A first modular coil configuration has been designed… ▽ More

    Submitted 28 July, 2026; originally announced July 2026.

  2. arXiv:2511.14934  [pdf, ps, other

    physics.flu-dyn astro-ph.IM

    Computational and Experimental Comparison of CLF5605 and roamx-0201 Martian Helicopter Rotor Airfoils

    Authors: Lidia Caros, Witold J. F. Koning, Takayuki Nagata, Keisuke Asai, Oliver Buxton, Natalia Perez Perez, Ethan A. Romander, Taku Nonomura, Haley V. Cummings, Peter Vincent

    Abstract: This study compares aerodynamic performance of the CLF5605 rotor airfoil -- which flew on Ingenuity from 2021 to 2024 -- with that of a new optimized roamx-0201 airfoil designed for Martian conditions at NASA Ames. Specifically, performance is studied at a Reynolds number of 20,000 and a Mach number of 0.60, across a range of angles of attack, using three independent state-of-the-art methodologies… ▽ More

    Submitted 18 November, 2025; originally announced November 2025.

  3. arXiv:2408.16509  [pdf, other

    physics.comp-ph

    PyFR v2.0.3: Towards Industrial Adoption of Scale-Resolving Simulations

    Authors: Freddie D. Witherden, Peter E. Vincent, Will Trojak, Yoshiaki Abe, Amir Akbarzadeh, Semih Akkurt, Mohammad Alhawwary, Lidia Caros, Tarik Dzanic, Giorgio Giangaspero, Arvind S. Iyer, Antony Jameson, Marius Koch, Niki Loppi, Sambit Mishra, Rishit Modi, Gonzalo Sáez-Mischlich, Jin Seok Park, Brian C. Vermeire, Lai Wang

    Abstract: PyFR is an open-source cross-platform computational fluid dynamics framework based on the high-order Flux Reconstruction approach, specifically designed for undertaking high-accuracy scale-resolving simulations in the vicinity of complex engineering geometries. Since the initial release of PyFR v0.1.0 in 2013, a range of new capabilities have been added to the framework, with a view to enabling in… ▽ More

    Submitted 29 August, 2024; originally announced August 2024.

  4. arXiv:2401.06132  [pdf, ps, other

    physics.flu-dyn cs.PF math.NA

    Cache Blocking for Flux Reconstruction: Extension to Navier-Stokes Equations and Anti-aliasing

    Authors: Semih Akkurt, Freddie Witherden, Peter Vincent

    Abstract: In this article, cache blocking is implemented for the Navier Stokes equations with anti-aliasing support on mixed grids in PyFR for CPUs. In particular, cache blocking is used as an alternative to kernel fusion to eliminate unnecessary data movements between kernels at the main memory level. Specifically, kernels that exchange data are grouped together, and these groups are then executed on small… ▽ More

    Submitted 6 November, 2023; originally announced January 2024.

  5. 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

  6. arXiv:2007.07397  [pdf, ps, other

    physics.comp-ph

    A new paradigm of dissipation-controllable, multi-scale resolving schemes for compressible flows

    Authors: Xi Deng, Zhen-hua Jiang, Peter Vincent, Feng Xiao, Chao Yan

    Abstract: The scale-resolving simulation of high speed compressible flow through direct numerical simulation (DNS) or large eddy simulation (LES) requires shock-capturing schemes to be more accurate for resolving broadband turbulence and robust for capturing strong shock waves. In this work, we develop a new paradigm of dissipation-controllable, shock capturing scheme to resolve multi-scale flow structures… ▽ More

    Submitted 14 July, 2020; originally announced July 2020.

  7. arXiv:1811.08839  [pdf, other

    cs.CV cs.LG eess.SP physics.med-ph stat.ML

    fastMRI: An Open Dataset and Benchmarks for Accelerated MRI

    Authors: Jure Zbontar, Florian Knoll, Anuroop Sriram, Tullie Murrell, Zhengnan Huang, Matthew J. Muckley, Aaron Defazio, Ruben Stern, Patricia Johnson, Mary Bruno, Marc Parente, Krzysztof J. Geras, Joe Katsnelson, Hersh Chandarana, Zizhao Zhang, Michal Drozdzal, Adriana Romero, Michael Rabbat, Pascal Vincent, Nafissa Yakubova, James Pinkerton, Duo Wang, Erich Owens, C. Lawrence Zitnick, Michael P. Recht , et al. (2 additional authors not shown)

    Abstract: Accelerating Magnetic Resonance Imaging (MRI) by taking fewer measurements has the potential to reduce medical costs, minimize stress to patients and make MRI possible in applications where it is currently prohibitively slow or expensive. We introduce the fastMRI dataset, a large-scale collection of both raw MR measurements and clinical MR images, that can be used for training and evaluation of ma… ▽ More

    Submitted 11 December, 2019; v1 submitted 21 November, 2018; originally announced November 2018.

    Comments: 35 pages, 10 figures

  8. arXiv:1810.11842  [pdf

    physics.ins-det hep-ex

    Effects of Proton Irradiation on 60 GHz CMOS Transceiver Chip for Multi-Gbps Communication in High-Energy Physics Experiments

    Authors: Imran Aziz, Dragos Dancila, Sebastian Dittmeier, Alexandre Siligaris, Cedric Dehos, Patrick M. De Lurgio, Zelimir Djurcic, Gary Drake, Jose Luis G. Jimenez, Leif Gustaffson, Do-Won Kim, Elizabeth Locci, Ulrich Pfeiffer, Pedro Rodriquez Vazquez, Dieter Röhrich, Andre Schöning, Hans K. Soltveit, Kjetil Ullaland, Pierre Vincent, Shiming Yang, Richard Brenner

    Abstract: This paper presents the experimental results of $17~MeV$ proton irradiation on a $60~GHz$ low power, half-duplex transceiver (TRX) chip implemented in $65~nm$ CMOS technology. It supports short range point-to-point data rate up to $6~Gbps$ by employing on-off keying (OOK). To investigate the irradiation hardness for high energy physics applications, two TRX chips were irradiated with total ionizin… ▽ More

    Submitted 12 June, 2019; v1 submitted 28 October, 2018; originally announced October 2018.

    Comments: Accepted on 25th March 2019, 6 pages

    Journal ref: The Journal of Engineering, 2019

  9. arXiv:1606.04214  [pdf, ps, other

    cond-mat.mes-hall physics.class-ph

    Quality factor enhancement of Nano electromechanical systems by capacitive driving beyond the resonance

    Authors: T Barois, S Perisanu, P Poncharal, Philippe Vincent, A Ayari

    Abstract: Nano electromechanical systems are considered as ultra sensitive devices for mass and force detection. Capacitive actuation is widely used in these devices but is known to degrade the quality factor of the resonator due to DC electrostatic damping. We report the enhancement of the quality factor of SiC vibrating nanowires detected nano optomechanically and electrically by applying an AC capacitive… ▽ More

    Submitted 14 June, 2016; originally announced June 2016.

    Journal ref: Phys. Rev. Applied 6, 014012 (2016)

  10. arXiv:1511.05807  [pdf

    physics.ins-det cs.NI hep-ex

    Development of Wireless Techniques in Data and Power Transmission - Application for Particle Physics Detectors

    Authors: R. Brenner, S. Ceuterickx, C. Dehos, P. De Lurgio, Z. Djurcic, G. Drake, J. L. Gonzalez Gimenez, L. Gustafsson, D. W. Kim, E. Locci, D. Roehrich, A. Schoening, A. Siligaris, H. K. Soltveit, K. Ullaland, P. Vincent, D. Wiednert, S. Yang

    Abstract: Wireless techniques have developed extremely fast over the last decade and using them for data and power transmission in particle physics detectors is not science- fiction any more. During the last years several research groups have independently thought of making it a reality. Wireless techniques became a mature field for research and new developments might have impact on future particle physics… ▽ More

    Submitted 18 November, 2015; originally announced November 2015.

  11. arXiv:1409.0405  [pdf, other

    physics.flu-dyn cs.CE physics.comp-ph

    Heterogeneous Computing on Mixed Unstructured Grids with PyFR

    Authors: F. D. Witherden, B. C. Vermeire, P. E. Vincent

    Abstract: PyFR is an open-source high-order accurate computational fluid dynamics solver for mixed unstructured grids that can target a range of hardware platforms from a single codebase. In this paper we demonstrate the ability of PyFR to perform high-order accurate unsteady simulations of flow on mixed unstructured grids using heterogeneous multi-node hardware. Specifically, after benchmarking single-node… ▽ More

    Submitted 1 September, 2014; originally announced September 2014.

    Comments: 21 pages, 9 figures, 6 tables

  12. arXiv:1401.6829  [pdf, other

    quant-ph physics.optics

    Bidimensional nano-optomechanics and topological backaction in a non-conservative radiation force field

    Authors: Arnaud Gloppe, Pierre Verlot, Eva Dupont-Ferrier, Alessandro Siria, Philippe Poncharal, Guillaume Bachelier, Pascal Vincent, Olivier Arcizet

    Abstract: Optomechanics, which explores the fundamental coupling between light and mechanical motion, has made important advances in both exploring and manipulating macroscopic mechanical oscillators down to the quantum level. However, dynamical effects related to the vectorial nature of the optomechanical interaction remain to be investigated. Here we study a nanowire with sub-wavelength dimensions strongl… ▽ More

    Submitted 27 January, 2014; originally announced January 2014.

  13. arXiv:1312.3305  [pdf, ps, other

    cond-mat.mes-hall physics.class-ph

    Role of fluctuations and nonlinearities on field emission nanomechanical self-oscillators

    Authors: Thomas Barois, S. Perisanu, Anthony AYARI, Stephen T. Purcell, Pascal Vincent

    Abstract: A theoretical and experimental description of the threshold, amplitude, and stability of a self-oscillating nanowire in a field emission configuration is presented. Two thresholds for the onset of self-oscillation are identified, one induced by fluctuations of the electromagnetic environment and a second revealed by these fluctuations by measuring the probability density function of the current. T… ▽ More

    Submitted 11 December, 2013; originally announced December 2013.

    Journal ref: Physical Review B 88 (2013) 195428

  14. arXiv:1312.1638  [pdf, other

    physics.comp-ph math.NA

    PyFR: An Open Source Framework for Solving Advection-Diffusion Type Problems on Streaming Architectures using the Flux Reconstruction Approach

    Authors: Freddie D Witherden, Antony M Farrington, Peter E Vincent

    Abstract: High-order numerical methods for unstructured grids combine the superior accuracy of high-order spectral or finite difference methods with the geometric flexibility of low-order finite volume or finite element schemes. The Flux Reconstruction (FR) approach unifies various high-order schemes for unstructured grids within a single framework. Additionally, the FR approach exhibits a significant degre… ▽ More

    Submitted 7 May, 2014; v1 submitted 5 December, 2013; originally announced December 2013.

    MSC Class: 65M60 65M70

  15. arXiv:1310.5877  [pdf, other

    astro-ph.IM physics.ins-det

    The camera of the fifth H.E.S.S. telescope. Part I: System description

    Authors: J. Bolmont, P. Corona, P. Gauron, P. Ghislain, C. Goffin, L. Guevara Riveros, J. -F. Huppert, O. Martineau-Huynh, P. Nayman, J. -M. Parraud, J. -P. Tavernet, F. Toussenel, D. Vincent, P. Vincent, W. Bertoli, P. Espigat, M. Punch, D. Besin, E. Delagnes, J. -F. Glicenstein, Y. Moudden, P. Venault, H. Zaghia, L. Brunetti, P. -Y. David , et al. (32 additional authors not shown)

    Abstract: In July 2012, as the four ground-based gamma-ray telescopes of the H.E.S.S. (High Energy Stereoscopic System) array reached their tenth year of operation in Khomas Highlands, Namibia, a fifth telescope took its first data as part of the system. This new Cherenkov detector, comprising a 614.5 m^2 reflector with a highly pixelized camera in its focal plane, improves the sensitivity of the current ar… ▽ More

    Submitted 26 May, 2014; v1 submitted 22 October, 2013; originally announced October 2013.

    Comments: 16 pages, 13 figures, accepted for publication in NIM A

  16. arXiv:1106.1238  [pdf, ps, other

    physics.ins-det hep-ex

    The T2K Experiment

    Authors: T2K Collaboration, K. Abe, N. Abgrall, H. Aihara, Y. Ajima, J. B. Albert, D. Allan, P. -A. Amaudruz, C. Andreopoulos, B. Andrieu, M. D. Anerella, C. Angelsen, S. Aoki, O. Araoka, J. Argyriades, A. Ariga, T. Ariga, S. Assylbekov, J. P. A. M. de André, D. Autiero, A. Badertscher, O. Ballester, M. Barbi, G. J. Barker, P. Baron , et al. (499 additional authors not shown)

    Abstract: The T2K experiment is a long-baseline neutrino oscillation experiment. Its main goal is to measure the last unknown lepton sector mixing angle θ_{13} by observing ν_e appearance in a ν_μ beam. It also aims to make a precision measurement of the known oscillation parameters, Δm^{2}_{23} and sin^{2} 2θ_{23}, via ν_μ disappearance studies. Other goals of the experiment include various neutrino cross… ▽ More

    Submitted 8 June, 2011; v1 submitted 6 June, 2011; originally announced June 2011.

    Comments: 33 pages, 32 figures, Submitted and accepted by NIM A. Editor: Prof. Chang Kee Jung, Department of Physics and Astronomy, SUNY Stony Brook, chang.jung@sunysb.edu, 631-632-8108 Submit Edited to remove line numbers