Noise is resource-contextual in quantum communication
May 01, 2023 Β· Declared Dead Β· π Physical Review Research
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Authors
Aditya Nema, Ananda G. Maity, Sergii Strelchuk, David Elkouss
arXiv ID
2305.00680
Category
quant-ph: Quantum Computing
Cross-listed
cs.IT
Citations
0
Venue
Physical Review Research
Last Checked
5 months ago
Abstract
Estimating the information transmission capability of a quantum channel remains one of the fundamental problems in quantum information processing. In contrast to classical channels, the information-carrying capability of quantum channels is contextual. One of the most significant manifestations of this is the superadditivity of the channel capacity: the capacity of two quantum channels used together can be larger than the sum of the individual capacities. Here, we present a one-parameter family of channels for which as the parameter increases its one-way quantum and private capacities increase while its two-way capacities decrease. We also exhibit a one-parameter family of states with analogous behavior with respect to the one- and two-way distillable entanglement and secret key. Our constructions demonstrate that noise is context dependent in quantum communication.
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