Light-matter interfaces enable the generation of entangled states of light and matter which can be exploited to steer the quantum state of matter through measurement of light and feedback. Here we consider continuous-time, interferometric homodyne measurements of light on an array of light-matter interfaces followed by local feedback acting on each material system individually. While the systems are physically non-interacting, the feedback master equation we derive describes driven-dissipative, interacting many-body quantum dynamics, and comprises pairwise Hamiltonian interactions and collective jump operators. We characterize the general class of driven-dissipative many body systems which can be engineered in this way, and derive necessary...
Large-scale quantum networks in which quantum information is transferred between flying and stationa...
The cavity-optomechanical radiation pressure interaction provides the means to create entanglement b...
Trapping ultracold atoms in optical lattices enabled numerous breakthroughs uniting several discipli...
Light-matter interfaces enable the generation of entangled states of light and matter which can be e...
We investigate the creation and control of emergent collective behavior and quantum correlations usi...
In this dissertation, I explore interactions between matter and propagating light. The electromagnet...
An important challenge in non-Markovian open quantum systems is to understand what information we ga...
We study the atom-light interaction in the fully quantum regime, with the focus on off-resonant ligh...
We present a new optical scheme enabling the implementation of highly stable and configurable non-Ma...
peer reviewedAn important challenge in non-Markovian open quantum systems is to understand what info...
We combine the concept of Bell measurements, in which two systems are projected into a maximally ent...
An important challenge in non-Markovian open quantum systems is to understand what information we ga...
Quantum feedback can stabilize a two-level atom against decoherence (spontaneous emission), putting ...
Light enables manipulating many-body states of matter,and atoms trapped in optical lattices are a pr...
Remarkable experimental progress and theoretical advancements in the study of strongly corre- lated ...
Large-scale quantum networks in which quantum information is transferred between flying and stationa...
The cavity-optomechanical radiation pressure interaction provides the means to create entanglement b...
Trapping ultracold atoms in optical lattices enabled numerous breakthroughs uniting several discipli...
Light-matter interfaces enable the generation of entangled states of light and matter which can be e...
We investigate the creation and control of emergent collective behavior and quantum correlations usi...
In this dissertation, I explore interactions between matter and propagating light. The electromagnet...
An important challenge in non-Markovian open quantum systems is to understand what information we ga...
We study the atom-light interaction in the fully quantum regime, with the focus on off-resonant ligh...
We present a new optical scheme enabling the implementation of highly stable and configurable non-Ma...
peer reviewedAn important challenge in non-Markovian open quantum systems is to understand what info...
We combine the concept of Bell measurements, in which two systems are projected into a maximally ent...
An important challenge in non-Markovian open quantum systems is to understand what information we ga...
Quantum feedback can stabilize a two-level atom against decoherence (spontaneous emission), putting ...
Light enables manipulating many-body states of matter,and atoms trapped in optical lattices are a pr...
Remarkable experimental progress and theoretical advancements in the study of strongly corre- lated ...
Large-scale quantum networks in which quantum information is transferred between flying and stationa...
The cavity-optomechanical radiation pressure interaction provides the means to create entanglement b...
Trapping ultracold atoms in optical lattices enabled numerous breakthroughs uniting several discipli...