Simultaneous transmission of classical and quantum information under channel uncertainty and jamming attacks

October 24, 2018 Β· Declared Dead Β· πŸ› International Symposium on Information Theory

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Authors Holger Boche, Gisbert Janßen, Sajad Saeedinaeeni arXiv ID 1810.10406 Category math-ph Cross-listed cs.IT, quant-ph Citations 5 Venue International Symposium on Information Theory Last Checked 3 months ago
Abstract
We derive universal codes for simultaneous transmission of classical messages and entanglement through quantum channels, possibly under attack of a malignant third party. These codes are robust to different kinds of channel uncertainty. To construct such universal codes, we invoke and generalize properties of random codes for classical and quantum message transmission through quantum channels. We show these codes to be optimal by giving a multi-letter characterization of regions corresponding to the capacity of compound quantum channels for simultaneously transmitting and generating entanglement with classical messages. Also, we give dichotomy statements in which we characterize the capacity of arbitrarily varying quantum channels for simultaneous transmission of classical messages and entanglement. These include cases where the malignant jammer present in the arbitrarily varying channel model is classical (chooses channel states of product form) and fully quantum (is capable of general attacks not necessarily of product form).
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