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首页> 外文期刊>Scientific reports. >Fiber-based photon-pair source capable of hybrid entanglement in frequency and transverse mode, controllably scalable to higher dimensions
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Fiber-based photon-pair source capable of hybrid entanglement in frequency and transverse mode, controllably scalable to higher dimensions

机译:基于光纤的光子对源,能够在频率和横向模式下进行混合纠缠,可控制地扩展到更高的尺寸

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摘要

We have designed and implemented a photon-pair source, based on the spontaneous four wave mixing (SFWM) process in a few-mode fiber, in a geometry which permits multiple, simultaneous SFWM processes, each associated with a distinct combination of transverse modes for the four participating waves. In our source: i) each process is group-velocity-matched so that it is, by design, nearly-factorable, and ii) the spectral separation between neighboring processes is greater than the marginal spectral width of each process. Consequently, there is a direct correspondence between the joint amplitude of each process and each of the Schmidt mode pairs of the overall two-photon state. Our approach permits hybrid entanglement in discrete frequency and in transverse mode, whereby control of the number of supported fiber transverse modes allows scalability to higher dimensions while spectral filtering may be used for straightforward Schmidt mode discrimination.
机译:我们基于在少数模光纤中的自发四波混频(SFWM)过程设计并实现了一个光子对源,其几何形状允许同时进行多个SFWM过程,每个过程都与横向模式的不同组合相关,四个参与的浪潮。在我们的资料中:i)每个过程都是群速度匹配的,因此它在设计上几乎可以分解,并且ii)相邻过程之间的光谱间隔大于每个过程的边际光谱宽度。因此,每个过程的联合振幅与整个双光子状态的每个施密特模式对之间都存在直接对应关系。我们的方法允许在离散频率和横向模式下进行混合纠缠,从而控制受支持的光纤横向模式的数量可以扩展到更高的尺寸,而频谱过滤可用于直接进行Schmidt模式识别。

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