We study the nonlinear spectra and multi-photon correlation functions for the waveguide output of a two-level system (including realistic dissipation channels) with a time-delayed coherent feedback. We compute these observables by extending a recent quantum trajectory discretized-waveguide (QTDW) approach which exploits quantum trajectory simulations and a collisional model for the waveguide to tractably simulate the dynamics. Following a description of the general technique, we show how to calculate the first and second order quantum correlation functions, in the presence of a coherent pumping field. With a short delay time, we show how feedback can be used to filter out the central peak of the Mollow triplet or switch the output between b...
We theoretically study the few- and many-body dynamics of photons in chiral waveguides. In particula...
We introduce a general framework, based on collision models and discrete CP-maps, to describe on an ...
Non-equilibrium phases of quantum matter featuring time crystalline eigenstate order have been reali...
The purpose of this paper is to study two-photon dynamics induced by the coherent feedback control o...
In this paper, we show that quantum feedback control may be applied to generate desired states for a...
We investigate the creation and control of emergent collective behavior and quantum correlations usi...
This thesis discusses the dynamics of quantum-optical systems located in complex, non-markovian phot...
We study a three-qubit waveguide system in the presence of optical pumping, when the side qubits act...
Quantum feedback networks with non-negligible propagation delays in the interconnecting edges have r...
While the theoretical studies in waveguide quantum electrodynamics predominate with single-photon an...
Coherent time‐delayed feedback allows the control of a quantum system and its partial stabilization ...
Quantum nonlinear feedback control is developed for traveling optical fields. We first describe the ...
International audienceA feedback scheme, stabilizing an arbitrary photon-number state in a microwave...
The mismatch between elegant theoretical models and the detailed experimental reality is particularl...
A structured electromagnetic reservoir can result in novel dynamics of quantum emitters. In particul...
We theoretically study the few- and many-body dynamics of photons in chiral waveguides. In particula...
We introduce a general framework, based on collision models and discrete CP-maps, to describe on an ...
Non-equilibrium phases of quantum matter featuring time crystalline eigenstate order have been reali...
The purpose of this paper is to study two-photon dynamics induced by the coherent feedback control o...
In this paper, we show that quantum feedback control may be applied to generate desired states for a...
We investigate the creation and control of emergent collective behavior and quantum correlations usi...
This thesis discusses the dynamics of quantum-optical systems located in complex, non-markovian phot...
We study a three-qubit waveguide system in the presence of optical pumping, when the side qubits act...
Quantum feedback networks with non-negligible propagation delays in the interconnecting edges have r...
While the theoretical studies in waveguide quantum electrodynamics predominate with single-photon an...
Coherent time‐delayed feedback allows the control of a quantum system and its partial stabilization ...
Quantum nonlinear feedback control is developed for traveling optical fields. We first describe the ...
International audienceA feedback scheme, stabilizing an arbitrary photon-number state in a microwave...
The mismatch between elegant theoretical models and the detailed experimental reality is particularl...
A structured electromagnetic reservoir can result in novel dynamics of quantum emitters. In particul...
We theoretically study the few- and many-body dynamics of photons in chiral waveguides. In particula...
We introduce a general framework, based on collision models and discrete CP-maps, to describe on an ...
Non-equilibrium phases of quantum matter featuring time crystalline eigenstate order have been reali...