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Photothermally induced transparency

机译:光热诱导的透明度

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Induced transparency is a common but remarkable effect in optics. It occurs when a strong driving field is used to render an otherwise opaque material transparent. The effect is known as electromagnetically induced transparency in atomic media and optomechanically induced transparency in systems that consist of coupled optical and mechanical resonators. In this work, we introduce the concept of photothermally induced transparency (PTIT). It happens when an optical resonator exhibits nonlinear behavior due to optical heating of the resonator or its mirrors. Similar to the established mechanisms for induced transparency, PTIT can suppress the coupling between an optical resonator and a traveling optical field. We further show that the dispersion of the resonator can be modified to exhibit slow or fast light. Because of the relatively slow thermal response, we observe the bandwidth of the PTIT to be 2π × 15.9 Hz, which theoretically suggests a group velocity of as low as 5 m/s.
机译:诱导的透明度是光学中常见但显着的影响。当使用强驾驶场透明的透明透明的透明材料时,会发生这种情况。该效果被称为原子介质的电磁诱导的透明度,以及由耦合光学和机械谐振器组成的系统中的光学力学诱导的透明度。在这项工作中,我们介绍了光热诱导透明度(PTIT)的概念。当光学谐振器由于谐振器或其镜子的光学加热而表现出非线性行为时,它发生。类似于诱导透明度的既定机制,PTIT可以抑制光学谐振器和行驶光场之间的耦合。我们进一步表明,可以修改谐振器的分散以表现出慢或快光。由于热响应相对较慢,我们观察PTIT的带宽为2π×15.9Hz,理论上表明一个低至5米/秒的群体速度。

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