4noWe consider two chains, each made of N independent oscillators, immersed in a common thermal bath and study the dynamics of their mutual quantum correlations in the thermodynamic, large-N limit. We show that dissipation and noise due to the presence of the external environment are able to generate collective quantum correlations between the two chains at the mesoscopic level. The created collective quantum entanglement between the two many-body systems turns out to be rather robust, surviving for asymptotically long times even for non vanishing bath temperatures.reservedmixedBenatti, Fabio; Carollo, Federico; Floreanini, Roberto; Surace, J.Benatti, F.; Carollo, F.; Floreanini, R.; Surace, J
We investigate the fundamental limitations imposed by thermodynamics for creating correlations. Cons...
The prominent collective character of long-range interacting quantum systems makes them promising ca...
The prominent collective character of long-range interacting quantum systems makes them promising ca...
Abstract We consider two chains, each made of N independent oscillators, immersed in a common therma...
We show that two, non interacting, infinitely long spin chains can become globally entangled at the ...
We show that two, non-interacting, infinitely long spin chains can become globally entangled at the ...
We consider two non-interacting infinite quantum spin chains immersed in a common thermal environmen...
Two, non-interacting systems immersed in a common bath and evolving with a Markovian, completely pos...
Due to the large amount of microscopic constituents, sensible information that can be gathered about...
Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)Fundação de Amparo à Pesquisa do...
Quantum correlations between two free spinless dissipative distinguishable particles (interacting wi...
Starting from the exact evolution of a Markovian dissipative quantum walk, a non-Markovian decoheren...
The prominent collective character of long-range interacting quantum systems makes them promising ca...
Quantum correlations between two free spinless dissipative distinguishable particles (interacting wi...
The generation of entanglement between two oscillators that interact via a common reservoir is theor...
We investigate the fundamental limitations imposed by thermodynamics for creating correlations. Cons...
The prominent collective character of long-range interacting quantum systems makes them promising ca...
The prominent collective character of long-range interacting quantum systems makes them promising ca...
Abstract We consider two chains, each made of N independent oscillators, immersed in a common therma...
We show that two, non interacting, infinitely long spin chains can become globally entangled at the ...
We show that two, non-interacting, infinitely long spin chains can become globally entangled at the ...
We consider two non-interacting infinite quantum spin chains immersed in a common thermal environmen...
Two, non-interacting systems immersed in a common bath and evolving with a Markovian, completely pos...
Due to the large amount of microscopic constituents, sensible information that can be gathered about...
Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)Fundação de Amparo à Pesquisa do...
Quantum correlations between two free spinless dissipative distinguishable particles (interacting wi...
Starting from the exact evolution of a Markovian dissipative quantum walk, a non-Markovian decoheren...
The prominent collective character of long-range interacting quantum systems makes them promising ca...
Quantum correlations between two free spinless dissipative distinguishable particles (interacting wi...
The generation of entanglement between two oscillators that interact via a common reservoir is theor...
We investigate the fundamental limitations imposed by thermodynamics for creating correlations. Cons...
The prominent collective character of long-range interacting quantum systems makes them promising ca...
The prominent collective character of long-range interacting quantum systems makes them promising ca...