2016
DOI: 10.1002/lpor.201500258
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Entanglement distribution over 150 km in wavelength division multiplexed channels for quantum cryptography

Abstract: 7 pages, 5 figuresInternational audienceGranting information privacy is of crucial importance in our society, notably in fiber communication networks. Quantum cryptography provides a unique means to establish, at remote locations, identical strings of genuine random bits, with a level of secrecy unattainable using classical resources. However, several constraints, such as non-optimized photon number statistics and resources, detectors' noise, and optical losses, currently limit the performances in terms of bot… Show more

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Cited by 80 publications
(70 citation statements)
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“…The distribution of entanglement through fibre-optic arXiv:1907.04864v1 [quant-ph] 10 Jul 2019 cables has been predominantly focused on time-bin entanglement [10][11][12][13][14], where the entangled degree of freedom between the two photons is temporal, i.e., related to the order in which the photons arrive, as opposed to their polarisation. The former has been demonstrated over two 150 km arms [13], while the latter has been demonstrated over a single arm consisting of a 100 km fibre spool [15].…”
Section: Introductionmentioning
confidence: 99%
“…The distribution of entanglement through fibre-optic arXiv:1907.04864v1 [quant-ph] 10 Jul 2019 cables has been predominantly focused on time-bin entanglement [10][11][12][13][14], where the entangled degree of freedom between the two photons is temporal, i.e., related to the order in which the photons arrive, as opposed to their polarisation. The former has been demonstrated over two 150 km arms [13], while the latter has been demonstrated over a single arm consisting of a 100 km fibre spool [15].…”
Section: Introductionmentioning
confidence: 99%
“…On the quantum communication side, current integrated circuits operate almost exclusively in the single mode regime, and typically underexploit the tremendous abilities offered by standard fiber optical technologies. In the perspective of improving quantum key distribution (QKD) systems, a key step lies in the development of robust and reliable devices, showing straightforward compatibility with telecom standards and, consequently, with multimodal operations in the spectral domain [2][3][4][5][6].…”
Section: Introductionmentioning
confidence: 99%
“…This SNR can be improved by using a lower pump power at the price of reduced coincidence counts and of longer integration times [39]. There, our strategy is slightly different and promotes pragmatic realizations of QIS experiments by emphasizing high-coincidence counts while keeping a moderate but safe SNR [9].…”
Section: Photonic Device and Classical Measurementsmentioning
confidence: 99%
“…Energytime quantum correlation are revealed by the coherent superposition of the contributions coming from identical two-photon paths (short-short and long-long) contrarily to the contributions coming from different paths (longshort, or conversely). Consequently, a coincidence histogram with the emergence of 3 peaks is recorded [9] (Fig. 3b).…”
Section: Photonic Device and Classical Measurementsmentioning
confidence: 99%
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