Title of article :
Dynamics of collective decoherence and thermalization Original Research Article
Author/Authors :
M. Merkli، نويسنده , , G.P. Berman، نويسنده , , I.M. Sigal، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2008
Abstract :
We analyze the dynamics of N interacting spins (quantum register) collectively coupled to a thermal environment. Each spin experiences the same environment interaction, consisting of an energy conserving and an energy exchange part.
We find the decay rates of the reduced density matrix elements in the energy basis. We show that if the spins do not interact among each other, then the fastest decay rates of off-diagonal matrix elements induced by the energy conserving interaction is of order image, while that one induced by the energy exchange interaction is of the order N only. Moreover, the diagonal matrix elements approach their limiting values at a rate independent of N. For a general spin system the decay rates depend in a rather complicated (but explicit) way on the size N and the interaction between the spins.
Our method is based on a dynamical quantum resonance theory valid for small, fixed values of the couplings. We do not make Markov-, Born- or weak coupling (van Hove) approximations.
Keywords :
Quantum resonance theory , Level shift operator , Decoherence , Thermalization rate , Open quantum system , Quantum register , Thermal equilibrium , Qubit , Thermal reservoir , Spin system , Reduced density matrix , Decoherence rate
Journal title :
Annals of Physics
Journal title :
Annals of Physics