We study relaxation and dephasing in a strongly driven two-level system interacting with its environment. We develop a theory which gives a straightforward physical picture of the complex dynamics of the system in terms of dressed states. In addition to the dressing of the energy diagram, we describe the dressing of relaxation and dephasing. We find a good quantitative agreement between the theoretical calculations and measurements of a superconducting qubit driven by an intense microwave field. The competition of various processes leads to a rich structure in the observed behavior, including signatures of population inversion
We study the decoherence and the relaxation dynamics of topological states in an extended class of q...
We study the dynamics of dephasing in a quantum two-level system by modeling both 1/f and high-frequ...
We investigate how the combined effects of strong Ohmic dissipation and monochromatic driving affect...
We study relaxation and dephasing in a strongly driven two-level system interacting with its environ...
We examine the effect of multilevels on decoherence and dephasing properties of a quantum system con...
Driven chaotic systems are of interest in mesoscopic physics, as well as in nuclear, atomic and mole...
Supplemental videos can be found at http://physinfo.fr/publications/Ficheux1710.html and supplementa...
VK: Low Temperature LaboratoryWe analyze the stochastic evolution and dephasing of a qubit within th...
We show that the dynamics of a driven quantum system weakly coupled to the environment can exhibit t...
We study the decoherence of a superconducting qubit due to the dispersive coupling to a damped harmo...
The interplay of unitary evolution and local measurements in many-body systems gives rise to a stoch...
Relaxation phenomena in three different classical and quantum systems are investigated. First, the r...
We investigate the energy relaxation (T1) process of a qubit coupled to a bath of dissipative two-le...
We investigate the role of vacuum (zero-point) fluctuations in generating decoherence in a number of...
We investigate the role of vacuum (zero-point) fluctuations in generating decoherence in a number of...
We study the decoherence and the relaxation dynamics of topological states in an extended class of q...
We study the dynamics of dephasing in a quantum two-level system by modeling both 1/f and high-frequ...
We investigate how the combined effects of strong Ohmic dissipation and monochromatic driving affect...
We study relaxation and dephasing in a strongly driven two-level system interacting with its environ...
We examine the effect of multilevels on decoherence and dephasing properties of a quantum system con...
Driven chaotic systems are of interest in mesoscopic physics, as well as in nuclear, atomic and mole...
Supplemental videos can be found at http://physinfo.fr/publications/Ficheux1710.html and supplementa...
VK: Low Temperature LaboratoryWe analyze the stochastic evolution and dephasing of a qubit within th...
We show that the dynamics of a driven quantum system weakly coupled to the environment can exhibit t...
We study the decoherence of a superconducting qubit due to the dispersive coupling to a damped harmo...
The interplay of unitary evolution and local measurements in many-body systems gives rise to a stoch...
Relaxation phenomena in three different classical and quantum systems are investigated. First, the r...
We investigate the energy relaxation (T1) process of a qubit coupled to a bath of dissipative two-le...
We investigate the role of vacuum (zero-point) fluctuations in generating decoherence in a number of...
We investigate the role of vacuum (zero-point) fluctuations in generating decoherence in a number of...
We study the decoherence and the relaxation dynamics of topological states in an extended class of q...
We study the dynamics of dephasing in a quantum two-level system by modeling both 1/f and high-frequ...
We investigate how the combined effects of strong Ohmic dissipation and monochromatic driving affect...