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Find link is a tool written by Edward Betts.Longer titles found: Quantum dot single-photon source (view)
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Cavity quantum electrodynamics
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and can be repeated to swap it back again; this could be used as a single photon source (starting with an excited atom), or as an interface between an atomQuantum cryptography (9,073 words) [view diff] no match in snippet view article find links to article
eavesdropper. However, in 2016, scientists developed a near perfect single photon source and estimate that one could be developed in the near future. In practiceJörg Wrachtrup (607 words) [view diff] no match in snippet view article find links to article
is the basis for numerous applications of defects in diamond as single photon source, quantum register and in magnetometry. Wrachtrup has made severalDecoy state (1,348 words) [view diff] no match in snippet view article find links to article
protocols, such as BB84, a single photon source is assumed to be used by the sender, Alice. In reality, a perfect single photon source does not exist. InsteadG. I. Taylor (2,320 words) [view diff] exact match in snippet view article find links to article
because the light source was not a single-photon source, but the experiment was reproduced in 1986 using a single-photon source, and the same result was obtainedQuantum coin flipping (3,294 words) [view diff] no match in snippet view article find links to article
quantum coin flipping protocol. Previous protocols called for a single photon source or an entangled source to be secure. However, these sources are whySpontaneous parametric down-conversion (1,647 words) [view diff] exact match in snippet view article find links to article
Becher, Christoph (17 October 2016). "Highly efficient heralded single-photon source for telecom wavelengths based on a PPLN waveguide". Optics ExpressQuantum key distribution (11,755 words) [view diff] no match in snippet view article find links to article
several solutions to this problem. The most obvious is to use a true single photon source instead of an attenuated laser. While such sources are still at aRachel Oliver (materials scientist) (678 words) [view diff] exact match in snippet view article
factor of InGaN cavities. Her group developed the first blue-emitting single-photon source. She was the first to note rabi oscillations of GaN quantum dotsQuantum network (6,389 words) [view diff] no match in snippet view article find links to article
single-mode allowing for more precise communication. At the sender, a single photon source can be created by heavily attenuating a standard telecommunicationHong–Ou–Mandel effect (2,728 words) [view diff] exact match in snippet view article find links to article
Hong–Ou–Mandel effect was used to demonstrate the purity of a solid-state single-photon source by feeding two successive photons from the source into a 1:1 beamFock state (5,644 words) [view diff] no match in snippet view article find links to article
MIT has used an ensemble of atoms to produce a Fock state (a.k.a. single photon) source (PDF) Produce and measure a single photon state (Fock state) withMetamaterial (10,096 words) [view diff] no match in snippet view article find links to article
switching for integrated photonics, imaging, super high resolution and single photon source, steering of optical signals, enhanced plasmon resonance effectsMaiken Mikkelsen (1,709 words) [view diff] no match in snippet view article find links to article
Communications 6, 7788 (2015)). Realized first ultrafast and efficient single photon source. Realized this long-sought goal by embedding single quantum dotsNathalie de Leon (788 words) [view diff] exact match in snippet view article find links to article
and demonstrated it convert a broadband emitter to a narrow-band single-photon source. de Leon remained at Harvard University as a postdoctoral researcherHigher order coherence (5,459 words) [view diff] no match in snippet view article find links to article
=0} we have g ( 2 ) ( 0 ) = 0 {\displaystyle g^{(2)}(0)=0} for a single photon source because g ( 2 ) ( 0 ) = ⟨ n ( n − 1 ) ⟩ ⟨ n ⟩ 2 , {\displaystyle