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Isolated detection of elastic waves driven by the momentum of light

机译:孤立地检测由光的动量驱动的弹性波

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摘要

Electromagnetic momentum carried by light is observable through the mechanical effects radiation pressure exerts on illuminated objects. Momentum conversion from electromagnetic fields to elastic waves within a solid object proceeds through a string of electrodynamic and elastodynamic phenomena, collectively bound by momentum and energy continuity. The details of this conversion predicted by theory have yet to be validated by experiments, as it is difficult to distinguish displacements driven by momentum from those driven by heating due to light absorption. Here, we have measured temporal variations of the surface displacements induced by laser pulses reflected from a solid dielectric mirror. Ab initio modelling of momentum flow describes the transfer of momentum from the electromagnetic field to the dielectric mirror, with subsequent creation/propagation of multicomponent elastic waves. Complete consistency between predictions and absolute measurements of surface displacements offers compelling evidence of elastic transients driven predominantly by the momentum of light.
机译:通过辐射压力施加在被照物体上的机械作用,可以观察到光所携带的电磁动量。固体物体内从电磁场到弹性波的动量转换通过一系列电动力和弹性动力现象进行,这些动能和能量连续性共同约束着这一现象。由于很难将动量驱动的位移与热吸收驱动的位移区分开来,因此理论上预测的这种转换的细节尚未通过实验验证。在这里,我们测量了由固体介电镜反射的激光脉冲引起的表面位移的时间变化。动量流的从头开始建模描述了动量从电磁场到介电镜的转移,随后创建/传播了多分量弹性波。预测和表面位移的绝对测量值之间完全一致,这为主要由光动量驱动的弹性瞬变提供了令人信服的证据。

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