Coherence fraction is introduced to quantify proximity of quantum states to maximally coherent states, serving as a coherence measure connected to l1-norm coherence and distillability.
Selfcomplementary quantum channels
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abstract
Selfcomplementary quantum channels are characterized by such an interaction between the principal quantum system and the environment that leads to the same output states of both interacting systems. These maps can describe approximate quantum copy machines, as perfect copying of an unknown quantum state is not possible due to the celebrated no-cloning theorem. We provide here a parametrization of a large class of selfcomplementary channels and analyze their properties. Selfcomplementary channels preserve some residual coherences and residual entanglement. Investigating some measures of non-Markovianity we show that time evolution under selfcomplementary channels is highly non-Markovian.
fields
quant-ph 1years
2019 1verdicts
UNVERDICTED 1representative citing papers
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Coherence Fraction
Coherence fraction is introduced to quantify proximity of quantum states to maximally coherent states, serving as a coherence measure connected to l1-norm coherence and distillability.