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首页> 外文期刊>Nature Communications >Cascaded optical transparency in multimode-cavity optomechanical systems
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Cascaded optical transparency in multimode-cavity optomechanical systems

机译:多模腔光学机械系统中的级联光学透明度

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摘要

Electromagnetically induced transparency has great theoretical and experimental importance in many areas of physics, such as atomic physics, quantum optics and, more recent, cavity optomechanics. Optical delay is the most prominent feature of electromagnetically induced transparency, and in cavity optomechanics, the optical delay is limited by the mechanical dissipation rate of sideband-resolved mechanical modes. Here we demonstrate a cascaded optical transparency scheme by leveraging the parametric phonon-phonon coupling in a multimode optomechanical system, where a low damping mechanical mode in the unresolved-sideband regime is made to couple to an intermediate, high-frequency mechanical mode in the resolved-sideband regime of an optical cavity. Extended optical delay and higher transmission as well as optical advancing are demonstrated. These results provide a route to realize ultra-long optical delay, indicating a significant step towards integrated classical and quantum information storage devices.
机译:电磁感应的透明性在许多物理领域中具有重要的理论和实验重要性,例如原子物理学,量子光学,以及最近的腔体光力学。光学延迟是电磁感应透明性的最显着特征,在腔体光力学中,光学延迟受到边带分辨的机械模式的机械耗散率的限制。在这里,我们通过在多模光机系统中利用参量声子-声子耦合来演示级联的光学透明方案,其中在未解析边带状态下将低阻尼机械模式耦合到已解析边带中的中高频机械模式腔的边带状态。演示了扩展的光延迟和更高的传输以及光前进。这些结果提供了实现超长光延迟的途径,这表明向集成经典和量子信息存储设备迈出了重要一步。

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