2014AIP conference proceedingsOpen access

Quasi-superactivation for the classical capacity of quantum channels

László Gyöngyösi, Sándor Imre

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Abstract

The superactivation effect has its roots in the extreme violation of additivity of the channel capacity and enables to reliably transmit quantum information over zero-capacity quantum channels.In this work we demonstrate a similar effect for the classical capacity of a quantum channel which previously was thought to be impossible.

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The superactivation effect has its roots in the extreme violation of additivity of the channel capacity and enables to reliably transmit quantum information over zero-capacity quantum channels.In this work we demonstrate a similar effect for the classical capacity of a quantum channel which previously was thought to be impossible.

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Available abstract

The superactivation effect has its roots in the extreme violation of additivity of the channel capacity and enables to reliably transmit quantum information over zero-capacity quantum channels.In this work we demonstrate a similar effect for the classical capacity of a quantum channel which previously was thought to be impossible.

Key concepts: Classical capacity, Quantum channel, Quantum capacity, Amplitude damping channel, Quantum, Channel (broadcasting), Physics, Channel capacity

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