Florian Vigneau
Florian Vigneau
Oxford University, Materials department
Verified email at materials.ox.ac.uk
Cited by
Cited by
Germanium quantum-Well Josephson field-effect transistors and interferometers
F Vigneau, R Mizokuchi, DC Zanuz, X Huang, S Tan, R Maurand, S Frolov, ...
Nano letters 19 (2), 1023-1027, 2019
Ballistic One-Dimensional Holes with Strong g-Factor Anisotropy in Germanium
R Mizokuchi, R Maurand, F Vigneau, M Myronov, S De Franceschi
Nano letters 18 (8), 4861-4865, 2018
Magnetotransport subband spectroscopy in InAs nanowires
F Vigneau, V Prudkovkiy, I Duchemin, W Escoffier, P Caroff, YM Niquet, ...
Physical review letters 112 (7), 076801, 2014
Machine learning enables completely automatic tuning of a quantum device faster than human experts
H Moon, DT Lennon, J Kirkpatrick, NM van Esbroeck, LC Camenzind, ...
Nature communications 11 (1), 1-10, 2020
Quantum device fine-tuning using unsupervised embedding learning
NM van Esbroeck, DT Lennon, H Moon, V Nguyen, F Vigneau, ...
New Journal of Physics 22 (9), 095003, 2020
Sensitive radiofrequency readout of quantum dots using an ultra-low-noise SQUID amplifier
FJ Schupp, F Vigneau, Y Wen, A Mavalankar, J Griffiths, GAC Jones, ...
Journal of Applied Physics 127 (24), 244503, 2020
Anisotropic transport properties of quasiballistic InAs nanowires under high magnetic field
F Vigneau, Z Zeng, W Escoffier, P Caroff, R Leturcq, YM Niquet, B Raquet, ...
Physical Review B 97 (12), 125308, 2018
Revealing the band structure of InSb nanowires by high-field magnetotransport in the quasiballistic regime
F Vigneau, Ö Gül, YM Niquet, D Car, SR Plissard, W Escoffier, ...
Physical Review B 94 (23), 235303, 2016
Deep reinforcement learning for efficient measurement of quantum devices
V Nguyen, SB Orbell, DT Lennon, H Moon, F Vigneau, LC Camenzind, ...
arXiv preprint arXiv:2009.14825, 2020
Ultrastrong coupling between electron tunneling and mechanical motion
F Vigneau, J Monsel, J Tabanera, L Bresque, F Fedele, J Anders, ...
arXiv preprint arXiv:2103.15219, 2021
Transport électronique quasi-balistique dans les nanofils d'InAs et d'InSb sous champ magnétique
F Vigneau
INSA de Toulouse, 2016
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