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arxiv: 1311.2045 · v1 · pith:RGXZPYEHnew · submitted 2013-11-08 · 🪐 quant-ph

Competition between memory-keeping and memory-erasing decoherence channels

classification 🪐 quant-ph
keywords markoviandecoherencemechanismsnon-markoviannon-markovianityspinstrengthused
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We study the competing effects of simultaneous Markovian and non-Markovian decoherence mechanisms acting on a single spin. We show the existence of a threshold in the relative strength of such mechanisms above which the spin dynamics becomes fully Markovian, as revealed by the use of several non-Markovianity measures. We identify a measure-dependent nested structure of such thresholds, hinting at a causality relationship amongst the various non-Markovianity witnesses used in our analysis. Our considerations are then used to argue the unavoidably non-Markovian evolution of a single-electron quantum dot exposed to both intrinsic and Markovian technical noise, the latter of arbitrary strength.

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