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Optical Size Resonances in Nanostructures

机译:纳米结构中的光学尺寸共振

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摘要

The existence of optical size resonances in atomic nanostructures is proved. The properties of optical size resonances strongly depend on the interatomic distances and on the polarization of an external radiation field. The properties of linear and nonlinear size resonances are considered in the case of two-dimensional nanostructures. The linear optical size resonances are described based on a closed system of equations for dipole oscillators and nonlocal field equations taking into account the dipole-dipole interactions of atoms in the radiation field. Using a stationary solution to these equations, it is demonstrated that two isotropic atoms with definite intrinsic frequencies form an anisotropic system in the radiation field, possessing two or four size resonances depending on whether the component atoms are identical or different. The nanostructure composed of two different atoms possesses two size resonances with positive dispersion and two other resonances with negative dispersion. The frequencies of the size resonances significantly differ from the intrinsic frequencies of isolated atoms entering into the nanostructure. by changing the angle of incidence of the external wave, it is possible to excite various size resonances. The properties of nonlinear optical size resonances excited by an intense radiation field were theoretically and numerically studied using the modified Bloch equations and nonlocal field equations. Dispersion relationships for the nonlinear resonances were derived and the inversion properties of atoms in the nanostructure were studied for various polarizations of the external optical wave.
机译:证明了原子纳米结构中光学尺寸共振的存在。光学尺寸共振的性质在很大程度上取决于原子间距离和外部辐射场的极化。在二维纳米结构的情况下,考虑线性和非线性尺寸共振的特性。考虑到辐射场中原子的偶极-偶极相互作用,基于偶极振荡器方程的封闭系统和非局部场方程来描述线性光学尺寸共振。使用这些方程的固定解,证明了具有确定固有频率的两个各向同性原子在辐射场中形成各向异性系统,取决于组成原子是相同还是不同,它们具有两个或四个大小的共振。由两个不同原子组成的纳米结构具有两个具有正色散的尺寸共振和另一个具有负色散的共振。尺寸共振的频率明显不同于进入纳米结构的孤立原子的固有频率。通过改变外波的入射角,可以激发各种尺寸的共振。使用改进的Bloch方程和非局部场方程,从理论和数值上研究了由强辐射场激发的非线性光学尺寸共振的特性。推导了非线性共振的色散关系,并研究了纳米结构中原子对外部光波各种偏振的反转特性。

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