Chen Tian-Yi, Zhang Wen-Zhao, Fang Ren-Zhou, Hang Cheng-Zhou, Zhou Ling
Opt Express. 2017 May 15;25(10):10779-10790. doi: 10.1364/OE.25.010779.
Based on photon-phonon nonlinear interaction, a scheme of controllable photon-phonon converters is proposed at single-quantum level in a composed quadratically coupled optomechanical system. With the assistance of the mechanical oscillator, the Kerr nonlinear effect between photon and phonon is enhanced so that the single-photon state can be converted into the phonon state with high fidelity even under the current experimental condition that the single-photon coupling rate is much smaller than mechanical frequency (g ≪ ωm). The state transfer protocols and their transfer fidelity are discussed analytically and numerically. A multi-path photon-phonon converter is designed by combining the optomechanical system with low frequency resonators, which can be controlled by experimentally adjustable parameters. This work provides us a potential platform for quantum state transfer and quantum information.
基于光子-声子非线性相互作用,在一个复合二次耦合光机械系统中,于单量子水平提出了一种可控光子-声子转换器方案。在机械振子的辅助下,光子与声子之间的克尔非线性效应得到增强,使得即使在当前单光子耦合率远小于机械频率(g≪ωm)的实验条件下,单光子态也能以高保真度转换为声子态。通过解析和数值方法讨论了态转移协议及其转移保真度。通过将光机械系统与低频谐振器相结合,设计了一种多路径光子-声子转换器,其可由实验可调参数控制。这项工作为我们提供了一个用于量子态转移和量子信息的潜在平台。