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Single Photon Source with Individualized Single Photon Certifications

机译:具有个性化单光子认证的单光子源

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摘要

As currently implemented, single-photon sources cannot be made to produce single photons with high probability, while simultaneously suppressing the probability of yielding two or more photons. Because of this, single photon sources cannot really produce single photons on demand. We describe a multiplexed system that allows the probabilities of producing one and more photons to be adjusted independently, enabling a much better approximation of a source of single photons on demand. The scheme uses a heralded photon source based on parametric downconversion, but by effectively breaking the trigger detector area into multiple regions, we are able to extract more information about a heralded photon than is possible with a conventional arrangement. This scheme allows photons to be produced along with a quantitative "certification" that they are single pho-tons. Some of the single-photon certifications can be significantly better than what is possible with conventional downconversion sources (using a unified trigger detector region), as well as being better than faint laser sources. With such a source of more tightly certified single photons, it should be possible to improve the maximum secure bit rate possible over a quantum cryptographic link. We present an analysis of the relative merits of this method over the conventional arrangement.
机译:如当前实施的那样,不能使单光子源以高概率产生单光子,而同时抑制产生两个或更多光子的可能性。因此,单光子源无法真正按需产生单光子。我们描述了一种多路复用系统,该系统允许独立调节产生一个或多个光子的概率,从而可以按需更好地逼近单个光子源。该方案使用基于参数下变频的预示光子源,但是通过有效地将触发检测器区域划分为多个区域,我们能够比常规布置提取更多有关预示光子的信息。该方案允许产生光子,并带有定量“证明”,即它们是单光子。一些单光子认证可能明显优于常规下变频光源(使用统一的触发检测器区域),并且优于弱激光光源。使用这种经过更严格认证的单光子源,应该有可能在量子密码链路上提高最大安全比特率。我们提出了这种方法相对于传统布置的相对优点的分析。

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