Werner states have a host of interesting properties, which often serve to illuminate the unusual properties of quantum information. Starting from these states, one may define a family of quantum channels, known as the Holevo-Werner channels, which themselves afford several unusual properties. In this paper we use the teleportation covariance of these channels to upper bound their two-way assisted quantum and secret-key capacities. This bound may be expressed in terms of relative entropy distances, such as the relative entropy of entanglement, and also in terms of the squashed entanglement. Most interestingly, we show that the relative entropy bounds are strictly sub-additive for a sub-class of the Holevo-Werner channels, so that their regul...
Quantum communications promises reliable transmission of quantum information, efficient distribution...
We establish a converse bounds on the private transmission capabilities of a quantum channel. The ma...
We establish a converse bounds on the private transmission capabilities of a quantum channel. The ma...
This paper establishes several converse bounds on the private transmission capabilities of a quantum...
This paper establishes several converse bounds on the private transmission capabilities of a quantum...
This paper establishes several converse bounds on the private transmission capabilities of a quantum...
© 1963-2012 IEEE. This paper establishes several converse bounds on the private transmission capabil...
This paper establishes several converse bounds on the private transmission capabilities of a quantum...
We review recent results on the simulation of quantum channels, the reduction of adaptive protocols ...
We provide a versatile upper bound on the number of maximally entangled qubits, or private bits, sha...
We establish a converse bounds on the private transmission capabilities of a quantum channel. The ma...
Quantum communications promises reliable transmission of quantum information, efficient distribution...
We show that the max-Rains information of a quantum channel is an efficiently computable, single-let...
In order to efficiently put quantum technologies into action, we must know the characteristics of th...
We show that the max-Rains information of a quantum channel is an efficiently computable, single-let...
Quantum communications promises reliable transmission of quantum information, efficient distribution...
We establish a converse bounds on the private transmission capabilities of a quantum channel. The ma...
We establish a converse bounds on the private transmission capabilities of a quantum channel. The ma...
This paper establishes several converse bounds on the private transmission capabilities of a quantum...
This paper establishes several converse bounds on the private transmission capabilities of a quantum...
This paper establishes several converse bounds on the private transmission capabilities of a quantum...
© 1963-2012 IEEE. This paper establishes several converse bounds on the private transmission capabil...
This paper establishes several converse bounds on the private transmission capabilities of a quantum...
We review recent results on the simulation of quantum channels, the reduction of adaptive protocols ...
We provide a versatile upper bound on the number of maximally entangled qubits, or private bits, sha...
We establish a converse bounds on the private transmission capabilities of a quantum channel. The ma...
Quantum communications promises reliable transmission of quantum information, efficient distribution...
We show that the max-Rains information of a quantum channel is an efficiently computable, single-let...
In order to efficiently put quantum technologies into action, we must know the characteristics of th...
We show that the max-Rains information of a quantum channel is an efficiently computable, single-let...
Quantum communications promises reliable transmission of quantum information, efficient distribution...
We establish a converse bounds on the private transmission capabilities of a quantum channel. The ma...
We establish a converse bounds on the private transmission capabilities of a quantum channel. The ma...