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most citedQuantum phase transition in a single-molecule quantum dot

300 citations · 533 across the 17 of their papers we have counts for

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cond-mat.mes-hall20131 cited

Unveiling environmental entanglement in strongly dissipative qubits

Soumya Bera, Serge Florens, Harold Baranger +3

The coupling of a qubit to a macroscopic reservoir plays a fundamental role in understanding the complex transition from the quantum to the classical world. Considering a harmonic…

cond-mat.mes-hall20104 cited

Nonlocal correlations of the local density of states in disordered quantum Hall systems

T. Champel, S. Florens, M. E. Raikh

Motivated by recent high-resolution scanning tunneling microscopy (STM) experiments in the quantum Hall regime both on massive two-dimensional electron gas and on graphene, we cons…

cond-mat.mes-hall20104 cited

Transmission coefficient through a saddle-point electrostatic potential for graphene in the quantum Hall regime

Martina Flöser, Thierry Champel, Serge Florens

From the scattering of semicoherent-state wavepackets at high magnetic field, we derive analytically the transmission coefficient of electrons in graphene in the quantum Hall regim…

cond-mat.mes-hall200911 cited

Electron quantum dynamics in closed and open potentials at high magnetic fields: Quantization and lifetime effects unified by semicoherent states

T. Champel, S. Florens

We have developed a Green's function formalism based on the use of an overcomplete semicoherent basis of vortex states, specially devoted to the study of the Hamiltonian quantum dy…

cond-mat.mes-hall200915 cited

Local density of states in disordered two-dimensional electron gases at high magnetic field

Thierry Champel, Serge Florens

Motivated by high-accuracy scanning tunneling spectroscopy measurements on disordered two-dimensional electron gases in strong magnetic field, we present an exact solution for the…

cond-mat.mes-hall2008

Supplementary Information: Quantum phase transition in a single-molecule quantum dot

Nicolas Roch, Serge Florens, Vincent Bouchiat +2

Quantum criticality is the intriguing possibility offered by the laws of quantum mechanics when the wave function of a many-particle physical system is forced to evolve continuousl…