Quantum entanglement can be used in a communication scheme to establish a correlation between successive channel inputs that is impossible by classical means. It is known that the classical capacity of quantum channels can be enhanced by such entangled encoding schemes, but this is not always the case. In this paper, we prove that a strong converse theorem holds for the classical capacity of an entanglement-breaking channel even when it is assisted by a classical feedback link from the receiver to the transmitter. In doing so, we identify a bound on the strong converse exponent, which determines the exponentially decaying rate at which the success probability tends to zero, for a sequence of codes with communication rate exceeding capacity....
We show that the max-Rains information of a quantum channel is an efficiently computable, single-let...
Entangled inputs can enhance the capacity of quantum channels, this being one of the consequences of...
We prove that the classical capacity of an arbitrary quantum channel assisted by a free classical fe...
A strong converse theorem for the classical capacity of a quantum channel states that the probabilit...
We prove that the classical capacity of an arbitrary quantum channel assisted by a free classical fe...
A fully general strong converse for channel coding states that when the rate of sending classical in...
A fully general strong converse for channel coding states that when the rate of sending classical in...
We revisit a fundamental open problem in quantum information theory, namely, whether it is possible ...
We revisit a fundamental open problem in quantum information theory, namely whether it is possible t...
We establish the classical capacity of optical quantum channels as a sharp transition between two re...
© 2017 IEEE. We investigate the classical communication over quantum channels when assisted by no-si...
The fully quantum reverse Shannon theorem establishes the optimal rate of noiseless classical commun...
We determine the exact strong converse exponent of classical-quantum channel coding, for every rate ...
A strong converse theorem for channel capacity establishes that the error probability in any communi...
A strong converse theorem for channel capacity establishes that the error probability in any communi...
We show that the max-Rains information of a quantum channel is an efficiently computable, single-let...
Entangled inputs can enhance the capacity of quantum channels, this being one of the consequences of...
We prove that the classical capacity of an arbitrary quantum channel assisted by a free classical fe...
A strong converse theorem for the classical capacity of a quantum channel states that the probabilit...
We prove that the classical capacity of an arbitrary quantum channel assisted by a free classical fe...
A fully general strong converse for channel coding states that when the rate of sending classical in...
A fully general strong converse for channel coding states that when the rate of sending classical in...
We revisit a fundamental open problem in quantum information theory, namely, whether it is possible ...
We revisit a fundamental open problem in quantum information theory, namely whether it is possible t...
We establish the classical capacity of optical quantum channels as a sharp transition between two re...
© 2017 IEEE. We investigate the classical communication over quantum channels when assisted by no-si...
The fully quantum reverse Shannon theorem establishes the optimal rate of noiseless classical commun...
We determine the exact strong converse exponent of classical-quantum channel coding, for every rate ...
A strong converse theorem for channel capacity establishes that the error probability in any communi...
A strong converse theorem for channel capacity establishes that the error probability in any communi...
We show that the max-Rains information of a quantum channel is an efficiently computable, single-let...
Entangled inputs can enhance the capacity of quantum channels, this being one of the consequences of...
We prove that the classical capacity of an arbitrary quantum channel assisted by a free classical fe...