An optically preamplified receiver configuration resulting in a very low quantum limit is presented. Optical amplifiers are proven to efficiently enhance the receiver sensitivity of optical communication systems. We present an optically preamplified OOK/DD receiver scheme with a very low quantum limit, which is predicted to outperform previously studied configuration
Quantum enhanced receivers are endowed with resources to achieve higher sensitivities than conventio...
Abstract—It is well known that ideal free-space optical commu-nication at the quantum limit can have...
Abstract: By using a fiber optical parametric amplifier, we demonstrate a novel pre-amplification sc...
An optically preamplified receiver configuration resulting in a very low quantum limit is presented....
In this paper we evaluate experimentally measured signal-to-noise ratio performance of different typ...
Entanglement assisted (EA) communication represents an interesting alternative to classical communic...
We propose and demonstrate a novel preamplifier to improve receiver sensitivity for a 10-Gb/s return...
We present a novel model for calculating the bit error rate in optical communication systems in the ...
We have demonstrated an optical preamplifier with a record sensitivity of -38.8dBm (102 photons/bit)...
I show that an optical amplifier, when combined with photon subtraction, can be used for quantum sta...
We propose and realize a novel universal phase insensitive optical amplifier operating at the quantu...
We demonstrate a novel scheme to improve receiver sensitivity of using a fiber optical parametric am...
We investigate the performance of electronic equalization in dispersion-limited systems when a signa...
In a previous paper [1] we discussed the advantages in using linear optical transmission systems bas...
We demonstrate a balanced-homodyne LADAR receiver employing a phase-sensitive amplifier (PSA) to rai...
Quantum enhanced receivers are endowed with resources to achieve higher sensitivities than conventio...
Abstract—It is well known that ideal free-space optical commu-nication at the quantum limit can have...
Abstract: By using a fiber optical parametric amplifier, we demonstrate a novel pre-amplification sc...
An optically preamplified receiver configuration resulting in a very low quantum limit is presented....
In this paper we evaluate experimentally measured signal-to-noise ratio performance of different typ...
Entanglement assisted (EA) communication represents an interesting alternative to classical communic...
We propose and demonstrate a novel preamplifier to improve receiver sensitivity for a 10-Gb/s return...
We present a novel model for calculating the bit error rate in optical communication systems in the ...
We have demonstrated an optical preamplifier with a record sensitivity of -38.8dBm (102 photons/bit)...
I show that an optical amplifier, when combined with photon subtraction, can be used for quantum sta...
We propose and realize a novel universal phase insensitive optical amplifier operating at the quantu...
We demonstrate a novel scheme to improve receiver sensitivity of using a fiber optical parametric am...
We investigate the performance of electronic equalization in dispersion-limited systems when a signa...
In a previous paper [1] we discussed the advantages in using linear optical transmission systems bas...
We demonstrate a balanced-homodyne LADAR receiver employing a phase-sensitive amplifier (PSA) to rai...
Quantum enhanced receivers are endowed with resources to achieve higher sensitivities than conventio...
Abstract—It is well known that ideal free-space optical commu-nication at the quantum limit can have...
Abstract: By using a fiber optical parametric amplifier, we demonstrate a novel pre-amplification sc...