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Experimental confirmation of backscattering enhancement induced by a photonic jet

机译:光子射流引起的反向散射增强的实验确认

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The authors report experimental confirmation of backscattering enhancement induced by a photonic jet emerging from a dielectric sphere, a phenomenon recently predicted by theoretical solutions of Maxwell's equations. To permit relatively straightforward laboratory measurements at microwave frequencies rather than visible light, they appropriately scaled the original conceptual dimensions of the dielectric microsphere and its adjacent perturbing nanoparticle (located within the microsphere's photonic jet). Their experiments verified the existence of enhanced position-dependent backscattering perturbations by the adjacent particle. Their measured backscattering perturbations agreed well with prior theory and with additional finite-difference time-domain computational models of the complete microwave test geometry.
机译:作者报告了由电介质球发出的光子射流引起的反向散射增强的实验确认,这种现象最近由麦克斯韦方程组的理论解预测。为了允许在微波频率而不是可见光下进行相对简单的实验室测量,他们适当地缩放了介电微球及其邻近的扰动纳米粒子(位于微球的光子射流内)的原始概念尺寸。他们的实验证明了相邻粒子增强了位置相关的后向散射扰动。他们测得的反向散射扰动与先前的理论以及完整的微波测试几何形状的其他时域有限差分计算模型非常吻合。

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