<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>A. Gorse | LIP6 - Équipe QI</title><link>https://qi.lip6.fr/fr/people/a.-gorse/</link><atom:link href="https://qi.lip6.fr/fr/people/a.-gorse/index.xml" rel="self" type="application/rss+xml"/><description>A. Gorse</description><generator>Hugo Blox Builder (https://hugoblox.com)</generator><language>fr</language><copyright>© 2022 LIP6 Quantum Information Team</copyright><lastBuildDate>Mon, 01 Apr 2019 00:00:00 +0000</lastBuildDate><image><url>https://qi.lip6.fr/media/icon_hudf2fdaa51677944daa4f50609104ef9a_13950_512x512_fill_lanczos_center_3.png</url><title>A. Gorse</title><link>https://qi.lip6.fr/fr/people/a.-gorse/</link></image><item><title>Active engineering of four-wave mixing spectral correlations in multiband hollow-core fibers</title><link>https://qi.lip6.fr/fr/publication/2141395-active-engineering-of-four-wave-mixing-spectral-correlations-in-multiband-hollow-core-fibers/</link><pubDate>Mon, 01 Apr 2019 00:00:00 +0000</pubDate><guid>https://qi.lip6.fr/fr/publication/2141395-active-engineering-of-four-wave-mixing-spectral-correlations-in-multiband-hollow-core-fibers/</guid><description>&lt;p>We demonstrate theoretically and experimentally a high level of control of the four-wave mixing process in an inert gas–filled inhibited-coupling guiding hollow-core photonic crystal fiber. The specific multiple-branch dispersion profile in such fibers allows both correlated and separable bi-photon states to be produced. By controlling the choice of gas and its pressure and the fiber length, we experimentally generate various joint spectral intensity profiles in a stimulated regime that is transferable to the spontaneous regime. The generated profiles may cover both spectrally separable and correlated bi-photon states and feature frequency tuning over tens of THz, demonstrating a large dynamic control that will be very useful when implemented in the spontaneous regime as a photon pair source.&lt;/p></description></item><item><title>Shaping photon-pair time-frequency correlations in inhibited-coupling hollow-core fibers</title><link>https://qi.lip6.fr/fr/publication/1817938-shaping-photon-pair-time-frequency-correlations-in-inhibited-coupling-hollow-core-fibers/</link><pubDate>Mon, 21 May 2018 00:00:00 +0000</pubDate><guid>https://qi.lip6.fr/fr/publication/1817938-shaping-photon-pair-time-frequency-correlations-in-inhibited-coupling-hollow-core-fibers/</guid><description/></item><item><title>Shaping photon-pairs time-frequency correlations in inhibited-coupling hollow-core fibers</title><link>https://qi.lip6.fr/fr/publication/1817930-shaping-photon-pairs-time-frequency-correlations-in-inhibited-coupling-hollow-core-fibers/</link><pubDate>Sun, 13 May 2018 00:00:00 +0000</pubDate><guid>https://qi.lip6.fr/fr/publication/1817930-shaping-photon-pairs-time-frequency-correlations-in-inhibited-coupling-hollow-core-fibers/</guid><description>&lt;p>We experimentally show how multiband dispersion properties of inhibited-coupling hollow-core fibers allow to control the spectral correlations of photon pairs generated through four-wave-mixing in a fiber filled with non-linear gas.&lt;/p></description></item></channel></rss>