论文标题

将自由传播的单光子捕获到原子合奏中,作为量子固定的光脉冲

Trapping a Free-propagating Single-photon into an Atomic Ensemble as a Quantum Stationary Light Pulse

论文作者

Kim, U-Shin, Ihn, Yong Sup, Lee, Chung-Hyun, Kim, Yoon-Ho

论文摘要

有效的光子光子相互作用是实现量子信息处理的关键要素之一。然而,由于光子的骨质性质,这种相互作用通常必须通过原子介质介导,并且与效率密切相关的相互作用时间取决于原子 - 光子相互作用的特性。虽然电磁诱导的透明度效应确实提供了光子量子记忆的可能性,但它不会增强相互作用时间,因为它将光子状态完全映射到原子状态。相反,固定光脉冲(SLP)效应将光子状态捕获在零组速度的原子介质中,从而开放了增强的相互作用时间的可能性。在这项工作中,我们报告了通过量子SLP(QSLP)过程将自由传播的单光子捕获到冷原子合奏中的第一个实验演示。我们最终表明,在QSLP过程中,单光子状态的量子特性很好地保留了。我们的工作为新方法铺平了有效的光子 - 光子相互作用,外来光子状态和在光子系统中的多体模拟的方式。

Efficient photon-photon interaction is one of the key elements for realizing quantum information processing. The interaction, however, must often be mediated through an atomic medium due to the bosonic nature of photons, and the interaction time, which is critically linked to the efficiency, depends on the properties of the atom-photon interaction. While the electromagnetically induced transparency effect does offer the possibility of photonic quantum memory, it does not enhance the interaction time as it fully maps the photonic state to an atomic state. The stationary light pulse (SLP) effect, on the contrary, traps the photonic state inside an atomic medium with zero group velocity, opening up the possibility of the enhanced interaction time. In this work, we report the first experimental demonstration of trapping a free-propagating single-photon into a cold atomic ensemble via the quantum SLP (QSLP) process. We conclusively show that the quantum properties of the single-photon state are preserved well during the QSLP process. Our work paves the way to new approaches for efficient photon-photon interactions, exotic photonic states, and many-body simulations in photonic systems.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源