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通过自倍频激光产生晶体结构的横向图案。

Generation of crystal-structure transverse patterns via a self-frequency-doubling laser.

机构信息

State Key Laboratory of Crystal Materials, Shandong University, Jinan, China.

出版信息

Sci Rep. 2013;3:1085. doi: 10.1038/srep01085. Epub 2013 Jan 18.

Abstract

Two-dimensional (2D) visible crystal-structure patterns analogous to the quantum harmonic oscillator (QHO) have been experimentally observed in the near- and far-fields of a self-frequency-doubling (SFD) microchip laser. Different with the fundamental modes, the localization of the SFD light is changed with the propagation. Calculation based on Hermite-Gaussian (HG) functions and second harmonic generation theory reproduces well the patterns both in the near- and far-field which correspond to the intensity distribution in coordinate and momentum spaces, respectively. Considering the analogy of wave functions of the transverse HG mode and 2D harmonic oscillator, we propose that the simple monolithic SFD lasers can be used for developing of new materials and devices and testing 2D quantum mechanical theories.

摘要

二维(2D)可见晶体结构模式类似于量子谐振子(QHO),在自倍频(SFD)微芯片激光器的近场和远场中已经得到了实验观测。与基本模式不同,SFD 光的局域性随着传播而变化。基于厄米-高斯(HG)函数和二次谐波产生理论的计算很好地再现了近场和远场中的模式,分别对应于坐标和动量空间中的强度分布。考虑到横向 HG 模式和 2D 谐振子波函数的相似性,我们提出简单的单片 SFD 激光器可用于开发新材料和器件以及测试 2D 量子力学理论。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a88a/3548227/94e643b889d8/srep01085-f1.jpg

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