Affiliation:
1. CEA Saclay
2. École Normale Supérieure
Abstract
Motivated by the search for a quantum analogue of the macroscopic
fluctuation theory, we study quantum spin chains dissipatively coupled
to quantum noise. The dynamical processes are encoded in quantum
stochastic differential equations. They induce dissipative friction on
the spin chain currents. We show that, as the friction becomes stronger,
the noise induced dissipative effects localize the spin chain states on
a slow mode manifold, and we determine the effective stochastic quantum
dynamics of these slow modes. We illustrate this approach by studying
the quantum stochastic Heisenberg spin chain.
Funder
Agence Nationale de la Recherche
Subject
General Physics and Astronomy
Cited by
40 articles.
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