论文标题

使用薄膜翻译的环形光束不变的生成

Translationally Invariant Generation of Annular Beams using Thin Films

论文作者

Sharma, Naresh, Kumar, Govind, Garg, Vivek, Mote, Rakesh G., Vijaya, R., Gupta, Shilpi

论文摘要

薄膜的光学元素表现出转化不变性,因此对光学不一致的鲁棒性对于快速发展紧凑和集成的光学设备至关重要。在这封信中,我们通过空间滤波激光束的基本高斯模式来实验表明,该梁成形元件可生成环形梁。该元素包括使用溅射薄膜制造的一维光子晶体腔。该元素的平面体系结构和平面对称性使我们的光束整形技术翻译不变。生成的环形束对入射激光束的极化方向和波长敏感。使用环形光束的这种特性,我们显示了不同波长的同心环形束的同时产生。我们的实验观察结果表明,使用有限差分时间域方法进行的模拟结果非常一致。这样的横梁成型元素在从显微镜和医学到微电子行业的半导体光刻以及制造的领域中应用。

Thin film optical elements exhibiting translational invariance, and thus robustness to optical misalignment, are crucial for rapid development of compact and integrated optical devices. In this letter, we experimentally demonstrate a beam-shaping element that generates an annular beam by spatially filtering the fundamental Gaussian mode of a laser beam. The element comprises of a one-dimensional photonic crystal cavity fabricated using sputtered thin films. The planar architecture and in-plane symmetry of the element render our beam-shaping technique translationally invariant. The generated annular beam is sensitive to the polarization direction and the wavelength of the incident laser beam. Using this property of the annular beam, we show simultaneous generation of concentric annular beams of different wavelengths. Our experimental observations show an excellent agreement with simulation results performed using finite-difference time-domain method. Such a beam-shaping element has applications in areas ranging from microscopy and medicine to semiconductor lithography and manufacturing in microelectronics industry.

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