A dynamical model for quantum channels is introduced which allows one to pass continuously from the memoryless case to the case in which memory effects are present. The quantum and classical communication rates of the model are defined and explicit expression is provided in some limiting case. In this context, we introduce noise attenuation strategies where part of the signals are sacrificed to modify the channel environment. The case of qubit channel with phase damping noise is analysed in detail
We study a dephasing channel with memory, modelled by a multimode environment of oscillators. Focusi...
In the context of Quantum Communication theory, a lossy channel is a quantum channel that can descri...
We consider a model of a bosonic memory channel, which induces correlations among the transmitted si...
A dynamical model for quantum channels is introduced which allows one to pass continuously from the ...
In this paper we study quantum communication channels with correlated noise effects, i.e., quantum c...
Any physical process can be represented as a quantum channel mapping an initial state into a final s...
We discuss a couple of models aimed to describe memory effects in quantum channels. We start from a r...
With increasing communication rates via quantum channels, memory effects become unavoidable whenever...
We provide a simple model to study memory effects in a lossy bosonic quantum channel over arbitrary ...
Memory effects play a fundamental role in the study of the dynamics of open quantum systems. There e...
We introduce a general model describing correlated noise effects in quantum optical communication vi...
The maximum rates for information transmission through noisy quantum channels has primarily been dev...
We present a simple model of quantum communication where a noisy quantum channel may benefit from th...
The classical capacity of phase-invariant Gaussian channels has been recently determined under the a...
We study the information transmission through a quantum channel, defined over a continuous alphabet ...
We study a dephasing channel with memory, modelled by a multimode environment of oscillators. Focusi...
In the context of Quantum Communication theory, a lossy channel is a quantum channel that can descri...
We consider a model of a bosonic memory channel, which induces correlations among the transmitted si...
A dynamical model for quantum channels is introduced which allows one to pass continuously from the ...
In this paper we study quantum communication channels with correlated noise effects, i.e., quantum c...
Any physical process can be represented as a quantum channel mapping an initial state into a final s...
We discuss a couple of models aimed to describe memory effects in quantum channels. We start from a r...
With increasing communication rates via quantum channels, memory effects become unavoidable whenever...
We provide a simple model to study memory effects in a lossy bosonic quantum channel over arbitrary ...
Memory effects play a fundamental role in the study of the dynamics of open quantum systems. There e...
We introduce a general model describing correlated noise effects in quantum optical communication vi...
The maximum rates for information transmission through noisy quantum channels has primarily been dev...
We present a simple model of quantum communication where a noisy quantum channel may benefit from th...
The classical capacity of phase-invariant Gaussian channels has been recently determined under the a...
We study the information transmission through a quantum channel, defined over a continuous alphabet ...
We study a dephasing channel with memory, modelled by a multimode environment of oscillators. Focusi...
In the context of Quantum Communication theory, a lossy channel is a quantum channel that can descri...
We consider a model of a bosonic memory channel, which induces correlations among the transmitted si...