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Published in: Quantum Information Processing 7/2017

01-07-2017

Steady states of continuous-time open quantum walks

Authors: Chaobin Liu, Radhakrishnan Balu

Published in: Quantum Information Processing | Issue 7/2017

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Abstract

Continuous-time open quantum walks (CTOQW) are introduced as the formulation of quantum dynamical semigroups of trace-preserving and completely positive linear maps (or quantum Markov semigroups) on graphs. We show that a CTOQW always converges to a steady state regardless of the initial state when a graph is connected. When the graph is both connected and regular, it is shown that the steady state is the maximally mixed state. As shown by the examples in this article, the steady states of CTOQW can be very unusual and complicated even though the underlying graphs are simple. The examples demonstrate that the structure of a graph can affect quantum coherence in CTOQW through a long-time run. Precisely, the quantum coherence persists throughout the evolution of the CTOQW when the underlying topology is certain irregular graphs (such as a path or a star as shown in the examples). In contrast, the quantum coherence will eventually vanish from the open quantum system when the underlying topology is a regular graph (such as a cycle).

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Footnotes
1
We were not aware of the work [8] before we posted on arXiv the first version of the present article under the title Continuous-time open quantum walks. We acknowledge that [8] should be the very first paper concerning semigroups on graphs.
 
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Metadata
Title
Steady states of continuous-time open quantum walks
Authors
Chaobin Liu
Radhakrishnan Balu
Publication date
01-07-2017
Publisher
Springer US
Published in
Quantum Information Processing / Issue 7/2017
Print ISSN: 1570-0755
Electronic ISSN: 1573-1332
DOI
https://doi.org/10.1007/s11128-017-1625-8

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