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色散位移光纤中1.5微米波段量子关联光子对的产生:通过冷却光纤抑制噪声光子

1.5-microm band quantum-correlated photon pair generation in dispersion-shifted fiber: suppression of noise photons by cooling fiber.

作者信息

Takesue Hiroki, Inoue Kyo

出版信息

Opt Express. 2005 Oct 3;13(20):7832-9. doi: 10.1364/opex.13.007832.

Abstract

Spontaneous four-wave mixing in a dispersion-shifted fiber (DSF) is a promising approach for generating quantum-correlated photon pairs in the 1.5 microm band. However, it has been reported that noise photons generated by the spontaneous Raman scattering process degrade the quantum correlation of the generated photons. This paper describes the characteristics of quantum-correlated photon pair generation in a DSF cooled by liquid nitrogen. With this technique, the number of noise photons was sufficiently suppressed and the ratio of true coincidence to accidental coincidence was increased to ~30.

摘要

在色散位移光纤(DSF)中,自发四波混频是在1.5微米波段产生量子关联光子对的一种很有前景的方法。然而,据报道,自发拉曼散射过程产生的噪声光子会降低所产生光子的量子相关性。本文描述了在液氮冷却的色散位移光纤中产生量子关联光子对的特性。通过这种技术,噪声光子的数量得到了充分抑制,真符合与偶然符合的比率提高到了约30。

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