Parameterized coherence measure
arXiv:2306.11973 · doi:10.1016/j.rinp.2023.106611
Abstract
Quantifying coherence is an essential endeavor for both quantum mechanical foundations and quantum technologies. We present a bona fide measure of quantum coherence by utilizing the Tsallis relative operator -entropy. We first prove that the proposed coherence measure fulfills all the criteria of a well defined coherence measure, including the strong monotonicity in the resource theories of quantum coherence. We then study the ordering of the Tsallis relative operator -entropy of coherence, Tsallis relative -entropies of coherence, Rényi -entropy of coherence and norm of coherence for both pure and mixed qubit states. This provides a new method for defining new coherence measure and entanglement measure, and also provides a new idea for further study of quantum coherence.
10 pages, 6 figures
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