Denis Chevallier
ContactDepartment of PhysicsUniversity of Basel Klingelbergstrasse 82 CH-4056 Basel, Switzerland
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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
- Quantum transport
- Topological states of matter
- Hybrid heterostructures
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. |