Unambiguous State Discrimination with Intrinsic Coherence

We investigate the discrimination of pure-mixed (quantum filtering) and mixed-mixed states and compare their optimal success probability with the one for discriminating other pairs of pure states superposed by the vectors included in the mixed states. We prove that under the equal-fidelity condition...

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Bibliographic Details
Published inEntropy (Basel, Switzerland) Vol. 24; no. 1; p. 18
Main Authors Zhang, Jin-Hua, Zhang, Fu-Lin, Wang, Zhi-Xi, Yang, Hui, Fei, Shao-Ming
Format Journal Article
LanguageEnglish
Published Switzerland MDPI AG 23.12.2021
MDPI
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Summary:We investigate the discrimination of pure-mixed (quantum filtering) and mixed-mixed states and compare their optimal success probability with the one for discriminating other pairs of pure states superposed by the vectors included in the mixed states. We prove that under the equal-fidelity condition, the pure-pure state discrimination scheme is superior to the pure-mixed (mixed-mixed) one. With respect to quantum filtering, the coherence exists only in one pure state and is detrimental to the state discrimination for lower dimensional systems; while it is the opposite for the mixed-mixed case with symmetrically distributed coherence. Making an extension to infinite-dimensional systems, we find that the coherence which is detrimental to state discrimination may become helpful and vice versa.
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ISSN:1099-4300
1099-4300
DOI:10.3390/e24010018