论文标题

基于共振的四波混合的量子频率转换

Quantum frequency conversion based on resonant four-wave mixing

论文作者

Cheng, Chin-Yao, Lee, Jia-Juan, Liu, Zi-Yu, Shiu, Jiun-Shiuan, Chen, Yong-Fan

论文摘要

量子频率转换(QFC)是光子量子信息科学中的关键技术,要求频率转换光子的量子特性必须与输入光子相同,除了颜色。在非线性光学元件中,波浪混合效应远离共振条件通常用于实现QFC,因为它可以防止真空场储层有效破坏转化的光子的量子状态。在远离共振的条件下,实验通常需要强泵光产生大型非线性相互作用以实现高效QFC。但是,强泵光通常通过自发的拉曼或参数转换过程产生额外的噪声光子。本文中,我们从理论上研究了基于共振四波混合系统的另一种有效的QFC方案。由于电磁诱导的透明度(EIT)的影响,这种谐振QFC方案可以在低光水平下极大地抑制真空场噪声。因此,转换后的光子可以以高保真度继承输入光子的量子状态。我们的研究表明,如果基于EIT的QFC的转化效率接近100%,则转换光子的波函数和正常方差几乎与输入探针光子相同。

Quantum frequency conversion (QFC), a critical technology in photonic quantum information science, requires that the quantum characteristics of the frequency-converted photon must be the same as the input photon except for the color. In nonlinear optics, the wave mixing effect far away from the resonance condition is often used to realize QFC because it can prevent the vacuum field reservoir from destroying the quantum state of the converted photon effectively. Under conditions far away from resonance, experiments typically require strong pump light to generate large nonlinear interactions to achieve high-efficiency QFC. However, strong pump light often generates additional noise photons through spontaneous Raman or parametric conversion processes. Herein, we theoretically study another efficient QFC scheme based on a resonant four-wave mixing system. Due to the effect of electromagnetically induced transparency (EIT), this resonant QFC scheme can greatly suppress vacuum field noise at low light levels; consequently, the converted photon can inherit the quantum state of the input photon with high fidelity. Our research demonstrates that if the conversion efficiency of the EIT-based QFC is close to 100%, the wave function and quadrature variance of the converted photon are almost the same as the input probe photon.

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