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Quantum Trajectory Thermodynamics with Discrete Feedback Control

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arxiv 1602.04616 v2 pith:LIQ3KS4N submitted 2016-02-15 cond-mat.stat-mech quant-ph

classification cond-mat.stat-mechquant-ph
keywords quantumsystemtrajectorycontroldiscreteequalitiesfeedbackframework
verification ladder T0 review T1 audit T2 compute T3 formal
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We employ the quantum jump trajectory approach to construct a systematic framework to study the thermodynamics at the trajectory level in a nonequilibrium open quantum system under discrete feedback control. Within this framework, we derive quantum versions of the generalized Jarzynski equalities, which are demonstrated in an isolated pseudospin system and a coherently driven two-level open quantum system. Due to quantum coherence and measurement backaction, a fundamental distinction from the classical generalized Jarzynski equalities emerges in the quantum versions, which is characterized by a large negative information gain reflecting genuinely quantum rare events. A possible experimental scheme to test our findings in superconducting qubits is discussed.

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