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Quasiparticle interference and spectral function of the UTe2 superconductive surface band
A. Crépieux, E. Pangburn, S. Wang, K. Zhussupbekov, J.P. Carroll, B. Hu, Q. Gu, J.C.S. Davis, C. Pépin, and C. Bena,
ArXiv (2025)
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Imaging Odd-Parity Quasiparticle Interference in the Superconductive Surface State of UTe2
S. Wang, K. Zhussupbekov, J.P. Carroll, B. Hu, X. Liu, E. Pangburn, A. Crépieux, C. Pépin, C. Broyles, S. Ran, N.P. Butch, S. Saha, J. Paglione, C. Bena, J.C.S. Davis, and Q. Gu,
ArXiv (2025)
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Finite-frequency noise, Fano factor, ΔT-noise and cross-correlations in double quantum dots
A. Crépieux, T.Q. Duong, and M. Lavagna,
J. Phys.: Condens. Matter 37 075302 (2025),
ArXiv
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Finite-Frequency Noise and Dynamical Charge Susceptibility in Single and Double Quantum Dot Systems
S. Richard, M. Lavagna, and A. Crépieux,
Annalen der Physik 2300345 (2023)
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Temperature-induced boomerang effect of electronic flow in asymmetric double-barrier semiconductor heterostructures
C. Belabbas, A. Crépieux, N. Cavassilas, F. Michelini, X. Zhu, C. Salhani, G. Etesse, K. Hirakawa, and M. Bescond,
Phys. Rev. Applied 20, 014056 (2023)
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Superconductivity in monolayer and few-layer graphene: III Impurity-induced subgap states and quasi-particle interference patterns
E. Pangburn, L. Haurie, A. Crépieux, O.A. Awoga, N. Sedlmayr, A.M. Black-Schaffer, C. Pépin, and C. Bena,
Phys. Rev. B 108, 134516 (2023),
ArXiv
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Superconductivity in monolayer and few-layer graphene: II. Topological edge states and Chern numbers
A. Crépieux, E. Pangburn, L. Haurie, O.A. Awoga, A.M. Black-Schaffer, N. Sedlmayr, C. Pépin, and C. Bena,
Phys. Rev. B 108, 134515 (2023),
ArXiv
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Superconductivity in monolayer and few-layer graphene: I. Review of possible pairing symmetries and basic electronic properties
E. Pangburn, L. Haurie, A. Crépieux, O.A. Awoga, A.M. Black-Schaffer, C. Pépin, and C. Bena,
Phys. Rev. B 108, 134514 (2023),
ArXiv
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Dynamical charge susceptibility in non-equilibrium double quantum dots
A. Crépieux and M. Lavagna,
Phys. Rev. B 106, 115439 (2022) -
ArXiv
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Electronic heat current fluctuations in a quantum dot
A. Crépieux,
Phys. Rev. B 103, 045427 (2021)
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ArXiv
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Level anticrossing effect in single-level or multi-level double quantum dots:
Electrical conductance, zero-frequency charge susceptibility and Seebeck coefficient
M. Lavagna, V. Talbo, T.Q. Duong, and A. Crépieux, Phys. Rev. B 102, 115112 (2020) -
ArXiv
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Emission noise in an interacting quantum dot: Role of inelastic
scattering and asymmetric coupling to the reservoirs
A. Crépieux, S. Sahoo, T.Q. Duong, R. Zamoum, and M. Lavagna, Phys. Rev. Lett. 120, 107702 (2018) -
ArXiv - See the processes contributing to noise
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Out-of-equilibrium fluctuation-dissipation relations verified by the electrical and thermoelectrical ac-conductances in a quantum dot
A. Crépieux,
Ann. Phys. 529, 1600344
(2017) - ArXiv
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Entropy production in photovoltaic/thermoelectric nanodevices from the non-equilibrium Green's function formalism
F. Michelini, A. Crépieux and K. Beltako,
J. Phys.: Condens. Matter 29, 175301 (2017) -
ArXiv
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Out-of-equilibrium Kondo Effect in a Quantum Dot: Interplay of Magnetic Field and Spin Accumulation
S. Sahoo, A. Crépieux and M. Lavagna, EPL 116, 57005 (2016) -
ArXiv
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Mixed electrical-heat noise spectrum in a quantum dot
P. Eyméoud and A. Crépieux, Phys. Rev. B 94, 205416 (2016) -
ArXiv
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Non-symmetrized noise in a quantum dot: Interpretation in terms of energy transfer and coherent superposition of scattering paths
R. Zamoum, M. Lavagna, and A. Crépieux,
Phys. Rev. B 93, 235449 (2016)
- ArXiv
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Mixed, charge and heat noises in thermoelectric nanosystems
A. Crépieux and F. Michelini,
J. Phys.: Condens. Matter 27, 015302 (2015) -
ArXiv
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Density of states of interacting quantum wires with impurities: a Dyson equation approach
R. Zamoum, M. Guigou, C. Bena, and A. Crépieux, Phys. Rev. B 90, 085408 (2014) -
ArXiv
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Series expansion of the quantum admittance in mesoscopic systems
A. Crépieux,
Phys. Rev. B 87, 155432 (2013) - ArXiv
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One-channel conductor coupled to a quantum of resistance:
exact ac conductance and finite-frequency noise
R. Zamoum, A. Crépieux, and I. Safi,
Phys. Rev. B 85, 125421 (2012) -
ArXiv
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Thermoelectricity and heat balance in a metal/dot/metal junction
A. Crépieux and F. Michelini,
Int. J. Nanotechnol. 9, No. 3-7, 355 (2012)
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Enhanced thermopower under a time-dependent gate voltage
A. Crépieux, F. Simkovic, B. Cambon, and F. Michelini,
Phys. Rev. B 83, 153417 (2011) -
ArXiv
Erratum : Phys. Rev. B 89, 239907 (2014)
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Screening of a Luttinger liquid wire by a scanning tunneling microscope tip: I. Spectral properties
M. Guigou, T. Martin, and A. Crépieux,
Phys. Rev. B 80, 045420 (2009) -
ArXiv
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Screening of a Luttinger liquid wire by a scanning tunneling microscope tip: II. Transport properties
M. Guigou, T. Martin, and A. Crépieux,
Phys. Rev. B 80, 045421 (2009) -
ArXiv
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ac conductance and non-symmetrized noise at finite frequency in quantum wires and carbon nanotubes
I. Safi, C. Bena, and A. Crépieux,
Phys. Rev. B 78, 205422 (2008) -
ArXiv
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Detection of finite-frequency current moments with a dissipative resonant circuit
A. Zazunov, M. Creux, E. Paladino, A. Crépieux, and T. Martin,
Phys. Rev. Lett. 99, 066601 (2007) -
ArXiv
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Finite size effects in a nanotube connected to leads: Super-and sub-Poissonian noise
M. Guigou, A. Popoff, T. Martin, and A. Crépieux,
Phys. Rev. B 76, 045104 (2007) -
ArXiv
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Photo-assisted Andreev reflection as a probe of quantum noise
T.K.T. Nguyen, T. Jonckheere, A. Crépieux, A.V. Nguyen, and T. Martin,
Phys. Rev. B 76, 035421 (2007) -
ArXiv
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Quantum dot dephasing by fractional quantum Hall edge states
T.K.T. Nguyen, A. Crépieux, T. Jonckheere, A.V. Nguyen, Y. Levinson, and T. Martin,
-
Phys. Rev. B 74, 153303 (2006) -
ArXiv
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Finite frequency noise cross-correlations of a mesoscopic circuit: a measurement method using a resonant circuit
M. Creux, A. Crépieux, and T. Martin,
Phys. Rev. B 74, 115323 (2006) -
ArXiv
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An electronic Mach-Zehnder interferometer in the Fractional Quantum Hall effect
T. Jonckheere, P. Devillard, A. Crépieux, and T. Martin,
Phys. Rev. B 72, 201305 (2005) -
ArXiv
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Electron-electron interactions in a one-dimensional quantum wire spin filter
P. Devillard, A. Crépieux, K.I. Imura, and T. Martin,
Phys. Rev. B 72, 041309 (2005) -
ArXiv
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Current and noise in a model of an AC-STM molecule-metal junction
R. Guyon, T. Jonckheere, V. Mujica, A. Crépieux, and T. Martin,
J. Chem. Phys. 122, 144703 (2005) -
ArXiv
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Electron injection in a nanotube with leads: finite frequency noise-correlations and anomalous charge
A.V. Lebedev, A. Crépieux, and T. Martin,
Phys. Rev. B 71, 075416 (2005) -
ArXiv
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Photo-assisted current and noise in the fractional quantum Hall effect
A. Crépieux, P. Devillard, and T. Martin,
Phys. Rev. B 69, 205302 (2004) -
ArXiv
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Electron injection in a nanotube: noise correlations and entanglement
A. Crépieux, R. Guyon, P. Devillard, and T. Martin,
Phys. Rev. B 67, 205408 (2003) -
ArXiv
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Localization corrections to the anomalous Hall effect in a ferromagnet
V.K. Dugaev, A. Crépieux, and P. Bruno,
Phys. Rev. B 64, 104411 (2001) -
ArXiv
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Relativistic corrections in magnetic systems
A. Crépieux and P. Bruno,
Phys. Rev. B 64, 094434 (2001) -
ArXiv
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Theory of the anomalous Hall effect from the Kubo formula and the Dirac equation
A. Crépieux and P. Bruno,
Phys. Rev. B 64, 014416 (2001) -
ArXiv
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Distribution of Kondo temperatures in a thin film
A. Crépieux and C. Lacroix,
Phys. Rev. B 61, 6785 (2000)
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Competition between the Kondo effect and the RKKY interaction in a thin
film
A. Crépieux and C. Lacroix,
Phys. Rev. B 59, 13824 (1999)
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Quasiclassical size effects for extraordinary Hall effect in magnetic
sandwiches
N. Ryzhanova, A. Vedyayev, A. Crépieux, and C. Lacroix,
Phys. Rev. B 57, 2943 (1998)
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Dzyaloshinsky-Moriya interactions induced by symmetry breaking at a surface
A. Crépieux and C. Lacroix,
J. Magn. Magn. Mater. 182, 341 (1998)
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Quantum size effects for extraordinary Hall effect in thin magnetic films
A. Crépieux, C. Lacroix, N. Ryzhanova, and A. Vedyayev,
Phys. Lett. A 229, 401 (1997)