One of the most sought-after goals in experimental quantum communication is the implementation of a quantum repeater. The performance of quantum repeaters can be assessed by comparing the attained rate with the quantum and private capacity of direct transmission, assisted by unlimited classical two-way communication. However, these quantities are hard to compute, motivating the search for upper bounds. Takeoka, Guha and Wilde found the squashed entanglement of a quantum channel to be an upper bound on both these capacities. In general it is still hard to find the exact value of the squashed entanglement of a quantum channel, but clever sub-optimal squashing channels allow one to upper bound this quantity, and thus also the corresponding cap...
We prove that a strong converse theorem holds for the classical capacity of all phase-insensitive bo...
The optimal performance of a communication network is limited not only by the quality of point-to-po...
In quantum mechanics, a fundamental law prevents quantum communications to simultaneously achieve hi...
One of the most sought-after goals in experimental quantum communication is the implementation of a ...
We define the squashed entanglement of a quantum channel as the maximum squashed entanglement that c...
This paper defines the squashed entanglement of a quantum channel as the maximum squashed entangleme...
Quantum communications promises reliable transmission of quantum information, efficient distribution...
The squashed entanglement of a quantum channel is an additive function of quantum channels, which fi...
In quantum mechanics, a fundamental law prevents quantum communications to simultaneously achieve hi...
We determine the maximum squashed entanglement achievable between sender and receiver of the noisele...
Quantum communications promises reliable transmission of quantum information, efficient distribution...
Ahlswede R, Bjelakovic I, Boche H, Nötzel J. Quantum Capacity under Adversarial Quantum Noise: Arbit...
The bosonic quantum channels have recently attracted a growing interest, motivated by the hope that ...
In this thesis we study the information transmission through Gaussian quantum channels. Gaussian qua...
The bosonic quantum channels have recently attracted a growing interest, motivated by the hope that ...
We prove that a strong converse theorem holds for the classical capacity of all phase-insensitive bo...
The optimal performance of a communication network is limited not only by the quality of point-to-po...
In quantum mechanics, a fundamental law prevents quantum communications to simultaneously achieve hi...
One of the most sought-after goals in experimental quantum communication is the implementation of a ...
We define the squashed entanglement of a quantum channel as the maximum squashed entanglement that c...
This paper defines the squashed entanglement of a quantum channel as the maximum squashed entangleme...
Quantum communications promises reliable transmission of quantum information, efficient distribution...
The squashed entanglement of a quantum channel is an additive function of quantum channels, which fi...
In quantum mechanics, a fundamental law prevents quantum communications to simultaneously achieve hi...
We determine the maximum squashed entanglement achievable between sender and receiver of the noisele...
Quantum communications promises reliable transmission of quantum information, efficient distribution...
Ahlswede R, Bjelakovic I, Boche H, Nötzel J. Quantum Capacity under Adversarial Quantum Noise: Arbit...
The bosonic quantum channels have recently attracted a growing interest, motivated by the hope that ...
In this thesis we study the information transmission through Gaussian quantum channels. Gaussian qua...
The bosonic quantum channels have recently attracted a growing interest, motivated by the hope that ...
We prove that a strong converse theorem holds for the classical capacity of all phase-insensitive bo...
The optimal performance of a communication network is limited not only by the quality of point-to-po...
In quantum mechanics, a fundamental law prevents quantum communications to simultaneously achieve hi...