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Photon pair-state preparation with tailored spectral properties by spontaneous four-wave mixing in photonic-crystal fiber.

机译:通过在光子晶体光纤中自发的四波混合,制备具有定制光谱特性的光子对态。

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摘要

We study theoretically the generation of photon pairs by spontaneous four-wave mixing (SFWM) in photonic crystal optical fiber. We show that it is possible to engineer two-photon states with specific spectral correlation ("entanglement") properties suitable for quantum information processing applications. We focus on the case exhibiting no spectral correlations in the two-photon component of the state, which we call factorability, and which allows heralding of single-photon pure-state wave packets without the need for spectral post filtering. We show that spontaneous four wave mixing exhibits a remarkable flexibility, permitting a wider class of two-photon states, including ultra-broadband, highly-anticorrelated states.
机译:我们在理论上研究了光子晶体光纤中自发四波混合(SFWM)产生光子对的过程。我们表明,有可能设计出具有特定光谱相关性(“纠缠”)性质的双光子状态,适用于量子信息处理应用。我们关注的情况是在状态的双光子分量中不表现出光谱相关性,我们将其称为可分解性,这可以预示单光子纯态波包而无需进行光谱后滤波。我们表明,自发的四波混合显示出显着的灵活性,允许更宽泛的两光子状态,包括超宽带,高度反相关的状态。

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