Denis Chevallier

Contact

Department of Physics
University of Basel
Klingelbergstrasse 82
CH-4056 Basel, Switzerland
office:4.6

email:view address

tel: +41 61 207 37 44


CV

2015 - present Research associate in the group of Jelena Klinovaja, University of Basel, Switzerland.
2013 - 2015 Postdoc in the group of Carlo Beenakker, Instituut Lorentz, University of Leiden, The Netherlands.
2011 - 2013 Postdoc in the group of Cristina Bena, Laboratoire de Physique des Solides, University Paris-Sud, France.
2008 - 2011 PhD in Physics under the supervision of Thierry Martin, Centre de Physique Théorique de Marseille,
Université de la Méditerranée, France.

Research interests

Publications

Show all abstracts.

1.  Full Counting Statistics of the momentum occupation numbers of the Tonks-Girardeau gas
P. Devillard, D. Chevallier, P. Vignolo, and M. Albert.
arXiv:2003.05868



2.  Magnetic field independent sub-gap states in hybrid Rashba nanowires
C. Juenger, R. Delagrange, D. Chevallier, S. Lehmann, K. A. Dick, C. Thelander, J. Klinovaja, D. Loss, A. Baumgartner, and C. Schoenenberger.
arXiv:2001.07666



3.  Transport signatures of topological phases in double nanowires probed by spin-polarized STM
M. Thakurathi, D. Chevallier, D. Loss, and J. Klinovaja.
arXiv:2001.05470



4.  Spectroscopy of the superconducting proximity effect in nanowires using integrated quantum dots
C. Juenger, A. Baumgartner, R. Delagrange, D. Chevallier, S. Lehmann, M. Nilsson, K. A. Dick, C. Thelander, and C. Schoenenberger.
Nature Communications Physics 2, 76 (2019); arXiv:1812.06850.



5.  Zero-energy Andreev bound states from quantum dots in proximitized Rashba nanowires
Christopher Reeg, O. Dmytruk, D. Chevallier, D. Loss, and J. Klinovaja.
Phys. Rev. B 98, 245407 (2018); arXiv:1810.09840.



6.  Renormalization of quantum dot g-factor in superconducting Rashba nanowires
O. Dmytruk, D. Chevallier, D. Loss, and J. Klinovaja.
Phys. Rev. B 98, 165403 (2018); arXiv:1806.06842.



7.  Topological Phase Detection in Rashba Nanowires with a Quantum Dot
D. Chevallier, P. Szumniak, S. Hoffman, D. Loss, and J. Klinovaja.
Phys. Rev. B 97, 045404 (2018); arXiv:1710.05576.



8.  Majorana fermions fingerprints in current correlations measurements from a superconducting tunnel microscope
P. Devillard, D. Chevallier, and M. Albert.
Phys. Rev. B 96, 115413 (2017); arXiv:1706.04838.



9.  Spin-dependent coupling between quantum dots and topological quantum wires
S. Hoffman, D. Chevallier, D. Loss, and J. Klinovaja.
Phys. Rev. B 96, 045440 (2017); arXiv:1705.03002.



10.  Spin and Charge Signatures of Topological Superconductivity in Rashba Nanowires
P. Szumniak, D. Chevallier, D. Loss, and J. Klinovaja.
Phys. Rev. B 96, 041401(R) (2017); arXiv:1703.00265.



11.  Probing Majorana and Andreev Bound States with Waiting Times
D. Chevallier, M. Albert, and P. Devillard.
EPL 116, 27005 (2016); arXiv:1606.08452.



12.  Tomography of Majorana Fermions with STM Tips
D. Chevallier and J. Klinovaja.
Phys. Rev. B 94, 035417 (2016); arXiv:1604.05724.



13.  Waiting times of entangled electrons in normal-superconducting junctions
M. Albert, D. Chevallier, and P. Devillard.
Physica E 76, 209 (2016); arXiv:1506.07042.



14.  Quench dynamics of fermion-parity switches in a Josephson junction
B. Tarasinski, D. Chevallier, J. Hutasoit, B. Baxevanis, and C. W. J. Beenakker.
Phys. Rev. B 92, 144306 (2015); arXiv:1503.04207.



15.  Superconductor spintronics: Modeling spin and charge accumulation in out-of-equilibrium NS junctions subjected to Zeeman magnetic fields
D. Chevallier, M. Trif, C. Dutreix, M. Guigou, M. Aprili, and C. Bena.
New J. Phys. 20, 013014 (2018); arXiv:1408.1833.



16.  Frequency-Domain Measurement of the Spin Imbalance Lifetime in Superconductors
C. H. L. Quay, C. Dutreix, D. Chevallier, C. Bena, and M. Aprili.
Phys. Rev. B 93, 220501(R) (2016); arXiv:1408.1832.



17.  Majorana Fermions in Honeycomb Lattices
C. Dutreix, M. Guigou, D. Chevallier, and C. Bena.
Eur. Phys. J. B 87, 296 (2014); arXiv:1309.1143.



18.  From Andreev bound states to Majorana fermions in topological wires on superconducting substrates : a story of mutation
D. Chevallier, P. Simon, and C. Bena.
Phys. Rev. B 88, 165401 (2013); arXiv:1301.7420.



19.  Effects of finite superconducting coherence lengths and of phase gradients in topological SN and SNS junctions and rings
D. Chevallier, D. Sticlet, P. Simon, and C. Bena.
Phys. Rev. B 87, 165414 (2013); arXiv:1210.6818.



20.  Spin Imbalance and Spin-Charge Separation in a Mesoscopic Superconductor
C. H. L. Quay, D. Chevallier, C. Bena, and M. Aprili.
Nature Physics 9, 84 (2013); arXiv:1208.0500.



21.  Mutation of Andreev into Majorana bound states in long NS and SNS junctions
D. Chevallier, D. Sticlet, P. Simon, and C. Bena.
Phys. Rev. B 85, 235307 (2012); arXiv:1203.2643.



22.  Current correlations in the interacting Cooper-Pair beam-splitter
J. Rech, D. Chevallier, T. Jonckheere, and T. Martin.
Phys. Rev. B 85, 035419 (2012); arXiv:1109.2476.



23.  Josephson effect through an anisotropic magnetic molecule
I. A. Sadovskyy, D. Chevallier, T. Jonckheere, M. Lee, S. Kawabata, and T. Martin.
Phys. Rev. B 84, 184513 (2011); arXiv:1106.4193.



24.  Current and noise correlations in a double dot Cooper pair beam splitter
D. Chevallier, J. Rech, T. Jonckheere, and T. Martin.
Phys. Rev. B 83, 125421 (2011); arXiv:1011.3408.



25.  Poissonian tunnelling through an extended impurity in the quantum Hall effect
D. Chevallier, J. Rech, T. Jonckheere, C. Wahl, and T. Martin.
Phys. Rev. B 82, 155318 (2010); arXiv:1007.4533.



26.  Detection of finite-frequency photo-assisted shot noise with a resonant circuit
D. Chevallier, T. Jonckheere, E. Paladino, G. Falci, and T. Martin.
Phys. Rev. B 81, 205411 (2010); arXiv:1001.1910.