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Electrical generation of stationary light in random scattering media

机译:随机散射介质中静止光的发电

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In recent years there has been great interest in controlling the speed of propagation of electromagnetic waves. In gases and crystals, coherent techniques have been applied to alter the speed of light without changing the physical or chemical structure of the medium. Also, light transmitted by highly disordered solids has exhibited signatures of Anderson localization, indicating the existence of a regime of "stopped" light that is mediated by random elastic scattering. However, to date, light has not been generated in a random medium as a point-like excitation that is fixed in space from the outset. Here we report experimental evidence for the electrical generation and confinement of light within nanosized volumes of a random dielectric scattering medium in which a population inversion has been established, and discuss the properties of these novel light sources. (C) 2004 Optical Society of America.
机译:近年来,人们对控制电磁波的传播速度非常感兴趣。在气体和晶体中,已经采用了相干技术来改变光速,而不改变介质的物理或化学结构。而且,由高度无序的固体透射的光已经表现出安德森定位的特征,表明存在由随机弹性散射介导的“停止”光的状态。然而,迄今为止,还没有在随机介质中产生光,而是从一开始就固定在空间中的点状激发。在这里,我们报告了在随机数介电散射介质(已建立种群反转)的纳米体积内光的产生和限制的实验证据,并讨论了这些新型光源的特性。 (C)2004年美国眼镜学会。

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