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Inducing forced and auto oscillations in one-dimensional photonic crystals with light

机译:用光在一维光子晶体中引起强迫和自激振荡

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We induced forced and auto oscillations in one-dimensional photonic crystals with localized defects when light impinges transversally to the defect layer. The photonic structure consists of a microcavity like structure formed of two one-dimensional photonic crystals made of free-standing porous silicon, separated by variable air gap and the working wavelength is 633 nm. The force generation is made evident by driving a laser light by means of a chopper; the light hits the photonic structure and induces a vibration and the vibration is characterized by using a very sensitive vibrometer. Moreover we measured peak displacements and velocities ranging from 2 up to 35 microns and 0.4 up to 2.1 mm/s with a power of 13 mW. Recent evidence showed that giant resonant light forces could induce average velocity values of 0.45 mm/s in microspheres embedded in water with 43 mW light power.
机译:当光横向入射到缺陷层时,我们会在具有局部缺陷的一维光子晶体中引起强制和自动振荡。光子结构由类似微腔的结构组成,该结构由两个由自由站立的多孔硅制成的一维光子晶体形成,并由可变气隙隔开,工作波长为633 nm。通过斩波器驱动激光可以明显地产生力。光撞击光子结构并引起振动,并且该振动的特征是使用非常灵敏的振动计。此外,我们以13 mW的功率测量了峰值位移和速度,峰值位移和速度范围从2到35微米,从0.4到2.1 mm / s。最近的证据表明,巨大的共振光力可以以43 mW的光功率在嵌入水中的微球中诱导平均速度值为0.45 mm / s。

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