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Quantum Phase Transitions in Spin-Boson Systems: Dissipation and Light Phenomena

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arxiv 0909.4822 v1 pith:E2EI4R3E submitted 2009-09-26 cond-mat.other

classification cond-mat.other
keywords quantumspin-bosondissipationphasesystemstransitionsaddressedatomic
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Spin-boson models are essentially useful in the understanding of quantum optics, nuclear physics, quantum dissipation, and quantum computation. We discuss quantum phase transitions in various spin-boson Hamiltonians, compare, and contrast them. We summarize the theoretical concepts and results, open questions and implementations of those ideas in cold atomic and QED cavity systems are also addressed.

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  1. Driven quantum dot coupled to a fractional quantum Hall edge

    cond-mat.str-el 2019-08 conditional novelty 6.0 of 10

    A second-order perturbation theory, in both bosonized and spin-boson forms, gives the early-time current on a driven quantum dot-fractional quantum Hall edge system and predicts a phase shift for sinusoidal bias.

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