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Theoretical study of third-order nonlinear optical response of semiconductor carbon nanotubes

机译:半导体碳纳米管的三阶非线性光学响应的​​理论研究

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摘要

We present a theoretical study of the nonlinear-optical properties of single-shell semiconductor carbon nanotubes (CNs) within a simple model based on the two-band approximation of their electronic structure. By use of the Genkin-Mednis approach, we have calculated the nonlinear-optical spectra of the susceptibility of chi((3))(omega) for the following third-order polarization effects: the third harmonic generation, the intensity-dependent index of refraction, the two-photon absorption and the DC Kerr effect. It is found that in off-resonant conditions the susceptibility chi((3))(0) shows a four-power dependence on the tubule radius and can reach values typical of bulk III-V semiconductor compounds with the strongest nonlinear optical properties. The optical spectra of chi((3))(omega) under the three-photon resonance regime have revealed considerable enhancement of the radiation power generated at a third-harmonic frequency. Our results show that in CNs the nonlinear index of refraction as large as 2 x 10(-8) cm(2) W-1 can be achieved in a region where the two-photon absorption is small. The change of the refractive index of CNs of the order of 10(-11)E(0)(2) (V-2 cm(-2)) was found to be induced by a uniform static electric field E-0 applied along the CNs axis. It is concluded that carbon nanotubes present a considerable interest in view of their possible utilization in a variety of nonlinear optical devices. (C) 1998 Elsevier Science B.V. All rights reserved. [References: 81]
机译:我们在一个简单的模型中基于其电子结构的两波段近似,对单壳半导体碳纳米管(CN)的非线性光学性质进行了理论研究。通过使用Genkin-Mednis方法,我们针对以下三阶极化效应计算了chi((3))Ω的磁化率的非线性光学光谱:三次谐波的产生,强度的强度指数折射,双光子吸收和DC Kerr效应。发现在非共振条件下,磁化率chi((3))(0)显示出对微管半径的四次幂依赖性,并且可以达到具有最强非线性光学特性的体III-V半导体化合物的典型值。在三光子共振状态下的chi((3))ω的光谱表明,在三次谐波频率下产生的辐射功率显着提高。我们的结果表明,在中枢神经系统中,在两个光子吸收较小的区域中可以实现高达2 x 10(-8)cm(2)W-1的非线性折射率。发现CNs的折射率变化约为10(-11)E(0)(2)(V-2 cm(-2)),是由沿其施加的均匀静电场E-0引起的CNs轴。结论是,鉴于碳纳米管在各种非线性光学器件中的可能利用,它们引起了极大的兴趣。 (C)1998 Elsevier Science B.V.保留所有权利。 [参考:81]

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