We develop a fully quantum-mechanical approach, based on stochastic trajectories, for an incoherently pumped system of interacting bosons in contact with a thermal reservoir. It enables a complete characterization of coherence in such a multimode system. We apply our model to microcavity exciton polaritons interacting with acoustic phonons and observe the formation of a macroscopic occupation in the lowest-energy mode accompanied by the simultaneous establishment of temporal and spatial coherence. We describe the transition from thermal to coherent statistics together with the expected emergence of an off-diagonal long-range order.Peer reviewe
Advancing our understanding of non-equilibrium phenomena in quantum many-body systems remains one of...
We present a novel quantum stochastic evolution equation for a matter field describing the canonical...
We adopt a kinetic theory of polariton non-equilibrium Bose-Einstein condensation, to describe the f...
We develop a fully quantum-mechanical approach, based on stochastic trajectories, for an incoherentl...
We develop a fully quantum-mechanical approach, based on stochastic trajectories, for an incoherentl...
This work examines the possibility of developing spontaneous coherence in a driven-dissipative hybri...
In the first part of this thesis, a new method is proposed to circumvent the relaxation bottleneck t...
In a Bose–Einstein condensate, bosons condense in the lowest-energy mode available and exhibit high ...
In a Bose–Einstein condensate, bosons condense in the lowest-energy mode available and exhibit high ...
In a Bose–Einstein condensate, bosons condense in the lowest-energy mode available and exhibit high ...
We describe the time evolution of the quantum coherence in an open system consisting of two coupled ...
The central theme of this thesis is that of coherence in bosonic matter-wave fields. Analogous to op...
In a Bose–Einstein condensate, bosons condense in the lowest-energy mode available and exhibit high ...
We describe the time evolution of the quantum coherence in an open system consisting of two coupled ...
We report on the observation of quantum coherence of Bose–Einstein condensed photons in an optically...
Advancing our understanding of non-equilibrium phenomena in quantum many-body systems remains one of...
We present a novel quantum stochastic evolution equation for a matter field describing the canonical...
We adopt a kinetic theory of polariton non-equilibrium Bose-Einstein condensation, to describe the f...
We develop a fully quantum-mechanical approach, based on stochastic trajectories, for an incoherentl...
We develop a fully quantum-mechanical approach, based on stochastic trajectories, for an incoherentl...
This work examines the possibility of developing spontaneous coherence in a driven-dissipative hybri...
In the first part of this thesis, a new method is proposed to circumvent the relaxation bottleneck t...
In a Bose–Einstein condensate, bosons condense in the lowest-energy mode available and exhibit high ...
In a Bose–Einstein condensate, bosons condense in the lowest-energy mode available and exhibit high ...
In a Bose–Einstein condensate, bosons condense in the lowest-energy mode available and exhibit high ...
We describe the time evolution of the quantum coherence in an open system consisting of two coupled ...
The central theme of this thesis is that of coherence in bosonic matter-wave fields. Analogous to op...
In a Bose–Einstein condensate, bosons condense in the lowest-energy mode available and exhibit high ...
We describe the time evolution of the quantum coherence in an open system consisting of two coupled ...
We report on the observation of quantum coherence of Bose–Einstein condensed photons in an optically...
Advancing our understanding of non-equilibrium phenomena in quantum many-body systems remains one of...
We present a novel quantum stochastic evolution equation for a matter field describing the canonical...
We adopt a kinetic theory of polariton non-equilibrium Bose-Einstein condensation, to describe the f...