activity
20122014
most citedHeralded photon amplification for quantum communication

103 citations · 235 across the 5 of their papers we have counts for

collaborators

6 papers

quant-ph2014★ 71 cited

Pulsed source of spectrally uncorrelated and indistinguishable photons at telecom wavelengths

Natalia Bruno, Anthony Martin, Thiago Guerreiro +2

We report on the generation of indistinguishable photon pairs at telecom wavelengths based on a type-II parametric down conversion process in a periodically poled potassium titanyl…

quant-ph2013

Simple, pulsed, polarisation entangled photon pair source

N. Bruno, E. Zambrini Cruzeiro, A. Martin +1

We report the realisation of a fibred polarisation entangled photon-pair source at 1560 nm based on a type-II non linear interaction and working in the picosecond regime. By taking…

quant-ph2013★ 17 cited

Generation of tunable wavelength coherent states and heralded single photons for quantum optics applications

N. Bruno, A. Martin, R. T. Thew

Quantum optics experiments frequently involve interfering single photons and coherent states. In the case of multi-photon experiments this requires that all photons are frequency d…

quant-ph2013★ 44 cited

High efficiency coupling of photon pairs in practice

T. Guerreiro, A. Martin, B. Sanguinetti +3

Multi-photon and quantum communication experiments such as loophole-free Bell tests and device independent quantum key distribution require entangled photon sources which display h…

quant-ph2012

Displacing entanglement back and forth between the micro and macro domains

Natalia Bruno, Anthony Martin, Pavel Sekatski +3

Quantum theory is often presented as the theory describing the microscopic world, and admittedly, it has done this extremely well for decades. Nonetheless, the question of whether…

quant-ph2012★ 103 cited

Heralded photon amplification for quantum communication

C. I. Osorio, N. Bruno, N. Sangouard +3

Heralded noiseless amplification based on single-photon sources and linear optics is ideally suited for long-distance quantum communication tasks based on discrete variables. We ex…