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Interaction of ultrashort elliptically polarized laser pulses with nonlinear helical photonic metamaterial

机译:椭圆偏振超短激光脉冲与非线性螺旋光子超材料的相互作用

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摘要

The effect of nonlinear properties of a material with a periodic structural cell (three-dimensional spiral) on the specificity of transmission and reflection of elliptically polarized laser pulses normally incident on the metamaterial is studied using the finite-difference time-domain method. An analysis of the hodograph of electric-field strength vector showed that an increase in the peak intensity of a linearly polarized laser pulse incident on a sample leads to an increase in the orthogonal component of the electric-field strength vector in the pulse transmitted through the medium. When pulses containing few electric-field periods are incident on a metamaterial, the latter demonstrates radically different optical properties for right- and left-handed circularly polarized light passing through the medium. It was shown that an increase in the intensity of a right-handed (left-handed) circularly polarized ultrashort pulse, incident on a sample composed of a rather large number of right-handed (left-handed) spirals made of nonlinearmaterial, widens the frequency range within which the incident light is almost entirely reflected from the medium.
机译:使用有限差分时域方法研究了具有周期性结构单元(三维螺旋)的材料的非线性特性对通常入射在超材料上的椭圆偏振激光脉冲的透射和反射特异性的影响。对电场强度矢量的全息图的分析表明,入射到样品上的线性偏振激光脉冲的峰值强度的增加会导致在通过样品传输的脉冲中电场强度矢量的正交分量增加。中。当包含很少电场周期的脉冲入射到超材料上时,超材料对穿过介质的右旋和左旋圆偏振光表现出截然不同的光学特性。结果表明,入射到由大量非线性材料制成的右旋(左旋)螺旋组成的样品上的右旋(左旋)圆极化超短脉冲的强度增加了,入射光几乎完全被介质反射的频率范围。

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