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Open Quantum Systems Decoherence
Stochastic Feshbach Projection for the Dynamics of Open Quantum Systems
arXiv
Authors: Valentin Link, Walter T. Strunz
Year
2017
Paper ID
44715
Status
Preprint
Abstract Read
~2 min
Abstract Words
144
Citations
N/A
Abstract
We present a stochastic projection formalism for the description of quantum dynamics in Bosonic or spin environments. The Schrödinger equation in coherent state representation with respect to the environmental degrees of freedom can be reformulated by employing the Feshbach partitioning technique for open quantum systems based on the introduction of suitable non-Hermitian projection operators. In this picture the reduced state of the system can be obtained as a stochastic average over pure state trajectories. The corresponding non-Markovian stochastic Schrödinger equations include a memory integral over the past states. In the case of harmonic environments and linear coupling the approach gives a new form of the established non-Markovian quantum state diffusion (NMQSD) stochastic Schrödinger equation without functional derivatives. Utilizing spin coherent states, the evolution equation for spin environments resembles the Bosonic case with, however, a non-Gaussian average for the reduced density operator.
Why This Paper Matters
- This paper contributes to the Open Quantum Systems & Decoherence research area in the Quantum Articles archive.
- It adds a 2017 reference point for readers tracking recent quantum research.
- We present a stochastic projection formalism for the description of quantum dynamics in Bosonic or spin environments.
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