Quantum optical states are fragile and can become corrupted when passed through a lossy communication channel. Unlike for classical signals, optical amplifiers cannot be used to recover quantum signals. Quantum repeaters have been proposed as a way of reducing errors and hence increasing the range of quantum communications. Current protocols target specific discrete encodings, for example quantum bits encoded on the polarization of single photons. We introduce a more general approach that can reduce the effect of loss on any quantum optical encoding, including those based on continuous variables such as the field amplitudes. We show that in principle the protocol incurs a resource cost that scales polynomially with distance. We analyze the ...
The problem of distributing a secret key by quantum channels is one of the preeminent problems in qu...
Quantum repeaters (QRs) provide a way of enabling long distance quantum communication by establishin...
The continuous quadratures of a single mode of the light field present a promising avenue to encode...
In present-day quantum communications, one of the main problems is the lack of a quantum repeater de...
Gaussian noise induced by loss on Gaussian states may be corrected by distributing Einstein-Podolsky...
Quantum information degrades over distance due to the unavoidable imperfections of the transmission ...
We investigate the influence of memory errors in the quantum repeater scheme for long-range quantum ...
Decoherence is detrimental to quantum key distribution (QKD) over large distances. One of the propos...
We describe a continuous-variable error correction protocol that can correct the Gaussian noise indu...
Quantum repeaters enable long-range quantum communication in the presence of attenuation. Here we pr...
We propose an approach to implement quantum repeaters for long-distance quantum communication. Our p...
Quantum communication holds a promise for absolutely secure transmission of secret messages and fait...
The distribution of quantum states over long distances is limited by photon loss. Straightforward am...
Entangled coherent states can be prepared remotely by subtracting non-locally a single photon from t...
We introduce a refinement of the standard continuous variable teleportation measurement and displace...
The problem of distributing a secret key by quantum channels is one of the preeminent problems in qu...
Quantum repeaters (QRs) provide a way of enabling long distance quantum communication by establishin...
The continuous quadratures of a single mode of the light field present a promising avenue to encode...
In present-day quantum communications, one of the main problems is the lack of a quantum repeater de...
Gaussian noise induced by loss on Gaussian states may be corrected by distributing Einstein-Podolsky...
Quantum information degrades over distance due to the unavoidable imperfections of the transmission ...
We investigate the influence of memory errors in the quantum repeater scheme for long-range quantum ...
Decoherence is detrimental to quantum key distribution (QKD) over large distances. One of the propos...
We describe a continuous-variable error correction protocol that can correct the Gaussian noise indu...
Quantum repeaters enable long-range quantum communication in the presence of attenuation. Here we pr...
We propose an approach to implement quantum repeaters for long-distance quantum communication. Our p...
Quantum communication holds a promise for absolutely secure transmission of secret messages and fait...
The distribution of quantum states over long distances is limited by photon loss. Straightforward am...
Entangled coherent states can be prepared remotely by subtracting non-locally a single photon from t...
We introduce a refinement of the standard continuous variable teleportation measurement and displace...
The problem of distributing a secret key by quantum channels is one of the preeminent problems in qu...
Quantum repeaters (QRs) provide a way of enabling long distance quantum communication by establishin...
The continuous quadratures of a single mode of the light field present a promising avenue to encode...