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Optical Holography of Diatomic Small Nanostructure Objects and the Near-Field Effect: Dimensional Resonances at Normal Incidence of External Optical Radiation on a Small Object

机译:双原子小纳米结构物体的光学全息图和近场效应:小物体上外部光辐射正常入射时的尺寸共振

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The interaction of an atomic group occupying a volume with linear dimensions which are considerably smaller than the length of an external light wave is considered. On the basis of the joint set of equations for the electric field strength of the light wave and the optical equations for linear dipole oscillators, the selfconsistent problem of determination of the field at the points of location of the atoms, as well as at different points of observation outside the atomic group (a small object) in the wave and near-field zones, is solved. An optical plane hologram of a small object is obtained by way of interference of the coherent field of dipoles of the object and a reference coherent wave in a certain plane of observation points far from the object in the wave zone. It is shown with the help of numerical experiments that a small object forms interference fringes with a good contrast, which allows one to use optical quasi-resonant emission for the development of a nondestructive method of investigation of small objects.
机译:考虑了原子团的相互作用,该原子团占据的体积的线性尺寸大大小于外部光波的长度。根据光波电场强度的方程组和线性偶极子振荡器的光学方程组的联合,确定原子位置点以及不同点的场的自洽问题解决了在波和近场区域中原子团(一个小物体)之外的观测问题。小物体的光学平面全息图是通过物体的偶极子的相干场和参考相干波在波区中远离物体的某个观察点上的干涉而获得的。借助数值实验表明,一个小物体形成了具有良好对比度的干涉条纹,这使人们可以使用光学准谐振发射来发展一种无损研究小物体的方法。

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