The dynamics of open quantum systems is often modeled using master equations, which describe the expected outcome of an experiment (i.e., the average over many realizations of the same dynamics). Quantum trajectories, instead, model the outcome of ideal single experiments-the "clicks" of a perfect detector due to, e.g., spontaneous emission. The correct description of quantum jumps, which are related to random events characterizing a sudden change in the wave function of an open quantum system, is pivotal to the definition of quantum trajectories. In this article, we extend the formalism of quantum trajectories to open quantum systems with ultrastrong coupling (USC) between light and matter by properly defining jump operators in this regime...
We investigate a novel type of conditional dynamic that occurs in the strongly driven Jaynes-Cumming...
We present new results on different aspects of quantum interactions, from new phenomena to new mathe...
Non-Markovian evolution of an open quantum system can be `unraveled' into pure state trajectories ge...
Light-matter coupling with strength comparable to the bare transition frequencies of the system is c...
International audienceWhen the main source of qubit relaxation comes from its coupling to a photonic...
A strongly-driven ($\Omega >> \gamma$) two level atom relaxes towards an equilibrium state rho which...
In this dissertation, I explore interactions between matter and propagating light. The electromagnet...
A qubit can relax by fluorescence, which prompts the release of a photon into its electromagnetic en...
Added sections to the Supplementary Information on the concepts and signal-to-noise ratio of the exp...
Quantum theory posits that measurements are invasive: It describes an interactive process, mediating...
It is shown that the evolution of an open quantum system whose density operator obeys a Markovian ma...
Dissipation, the irreversible loss of energy and coherence, from a microsystem, is the result of cou...
A recent experiment by Minev et. al [arXiv:1803.00545] demonstrated that in a dissipative (artificia...
In this work radiation reaction (RR), classically described as the backreaction of radiation emitted...
This paper is devoted to the quantitative study of quantum trajecto-ries of systems subjected to a t...
We investigate a novel type of conditional dynamic that occurs in the strongly driven Jaynes-Cumming...
We present new results on different aspects of quantum interactions, from new phenomena to new mathe...
Non-Markovian evolution of an open quantum system can be `unraveled' into pure state trajectories ge...
Light-matter coupling with strength comparable to the bare transition frequencies of the system is c...
International audienceWhen the main source of qubit relaxation comes from its coupling to a photonic...
A strongly-driven ($\Omega >> \gamma$) two level atom relaxes towards an equilibrium state rho which...
In this dissertation, I explore interactions between matter and propagating light. The electromagnet...
A qubit can relax by fluorescence, which prompts the release of a photon into its electromagnetic en...
Added sections to the Supplementary Information on the concepts and signal-to-noise ratio of the exp...
Quantum theory posits that measurements are invasive: It describes an interactive process, mediating...
It is shown that the evolution of an open quantum system whose density operator obeys a Markovian ma...
Dissipation, the irreversible loss of energy and coherence, from a microsystem, is the result of cou...
A recent experiment by Minev et. al [arXiv:1803.00545] demonstrated that in a dissipative (artificia...
In this work radiation reaction (RR), classically described as the backreaction of radiation emitted...
This paper is devoted to the quantitative study of quantum trajecto-ries of systems subjected to a t...
We investigate a novel type of conditional dynamic that occurs in the strongly driven Jaynes-Cumming...
We present new results on different aspects of quantum interactions, from new phenomena to new mathe...
Non-Markovian evolution of an open quantum system can be `unraveled' into pure state trajectories ge...