We consider a model of a light-matter system, in which a system of fermions (or bosons) is coupled to a photonic mode that drives a phase transitions in the matter degrees of freedom. Starting from a simplified analytical model, we show that the entanglement between light and matter vanishes at small and large coupling strength, and shows a peak in the proximity of the transition. We perform numerical simulations for a specific model (relevant to both solid state and cold atom platforms), and show that the entanglement displays critical behavior at the transition, and features maximum susceptibility, as demonstrated by a maximal entanglement capacity. Remarkably, light-matter entanglement provides direct access to critical exponents, sugges...
Starting from a general material system of $N$ particles coupled to a cavity, we use a coherent-stat...
Characterizing and controlling entanglement in quantum materials is crucial for next-generation quan...
Cavity embedding is an emerging paradigm for the control of quantum matter, offering avenues to mani...
We carefully examine critical metrology and present an improved critical quantum metrology protocol ...
The hybridization between light and matter forms the basis to achieve cavity control over quantum ma...
We carefully examine critical metrology and present an improved critical quantum metrology protocol ...
Information about quantum phase transitions in conventional condensed matter systems, must be sought...
This article overviews the recent developments in applying the idea of deconfined quantum criticalit...
Entanglement is a fundamental resource that allows quantum sensors to surpass the standard quantum l...
We study the quantum phase diagram and the onset of quantum critical phenomena in a generalized Dick...
How are the scattering between the constituents of matter and the resulting collective phenomena aff...
In this thesis I present the investigations of matter-light entanglement in cold atomic samples. Pa...
Considering the paradigmatic case of a cloud of two-level atoms interacting through common vacuum mo...
We study the problem of environmentally-induced decoherence in a near-critical one-dimensional syste...
We describe a system for long-distance distribution of quantum entanglement, in which coherent light...
Starting from a general material system of $N$ particles coupled to a cavity, we use a coherent-stat...
Characterizing and controlling entanglement in quantum materials is crucial for next-generation quan...
Cavity embedding is an emerging paradigm for the control of quantum matter, offering avenues to mani...
We carefully examine critical metrology and present an improved critical quantum metrology protocol ...
The hybridization between light and matter forms the basis to achieve cavity control over quantum ma...
We carefully examine critical metrology and present an improved critical quantum metrology protocol ...
Information about quantum phase transitions in conventional condensed matter systems, must be sought...
This article overviews the recent developments in applying the idea of deconfined quantum criticalit...
Entanglement is a fundamental resource that allows quantum sensors to surpass the standard quantum l...
We study the quantum phase diagram and the onset of quantum critical phenomena in a generalized Dick...
How are the scattering between the constituents of matter and the resulting collective phenomena aff...
In this thesis I present the investigations of matter-light entanglement in cold atomic samples. Pa...
Considering the paradigmatic case of a cloud of two-level atoms interacting through common vacuum mo...
We study the problem of environmentally-induced decoherence in a near-critical one-dimensional syste...
We describe a system for long-distance distribution of quantum entanglement, in which coherent light...
Starting from a general material system of $N$ particles coupled to a cavity, we use a coherent-stat...
Characterizing and controlling entanglement in quantum materials is crucial for next-generation quan...
Cavity embedding is an emerging paradigm for the control of quantum matter, offering avenues to mani...