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用于控制写入光敏材料中的表面浮雕光栅参数的堆叠偏振元件。

Stacked Polarizing Elements for Controlling Parameters of Surface Relief Gratings Written in Photosensitive Materials.

作者信息

Porfirev Alexey P, Khonina Svetlana N, Ivliev Nikolay A, Porfirev Denis P, Kazanskiy Nikolay L

机构信息

Image Processing Systems Institute of RAS-Branch of the FSRC "Crystallography and Photonics" RAS, Molodogvardeyskaya Str. 151, 443001 Samara, Russia.

Image Processing Systems Institute, National Research Centre "Kurchatov Institute", Molodogvardeyskaya Str. 151, 443001 Samara, Russia.

出版信息

Sensors (Basel). 2024 Feb 10;24(4):1166. doi: 10.3390/s24041166.

Abstract

Photosensitive materials are widely used for the direct fabrication of surface relief gratings (SRGs) without the selective etching of the material. It is known that the interferometric approach makes it possible to fabricate SRGs with submicron and even subwavelength periods. However, to change the period of the written SRGs, it is necessary to change the convergence angle, shift a sample, and readjust the interferometric setup. Recently, it was shown that structured laser beams with predetermined, periodically modulated polarization distributions can also be used to fabricate SRGs. A structured laser beam with the desired polarization distribution can be formed with just one polarizing optical element-for example, the so-called depolarizer, a patterned micro-retarder array. The use of such stacked elements makes it possible to directly control the modulation period of the polarization of the generated laser beam. We show that this approach allows one to fabricate SRGs with submicron periods. Moreover, the addition of -plates, elements effectively used to generate cylindrical vector beams with polarization singularities, allows the efficient formation of fork polarization gratings (FPGs) and the fabrication of higher-order fork-shaped SRGs. Full control of the parameters of the generated FPGs is possible. We demonstrate the formation of FPGs of higher orders (up to 12) by only adding first- and second-order -plates and half-wave plates to the depolarizers. In this work, we numerically and experimentally study the parameters of various types of SRGs formed using these stacked polarizing elements and show the significant potential of this method for the laser processing of photosensitive materials, which often also serve as polarization sensors.

摘要

光敏材料被广泛用于直接制造表面浮雕光栅(SRG),而无需对材料进行选择性蚀刻。众所周知,干涉测量方法能够制造出具有亚微米甚至亚波长周期的SRG。然而,要改变写入的SRG的周期,就必须改变会聚角、移动样品并重新调整干涉测量装置。最近的研究表明,具有预定的、周期性调制偏振分布的结构化激光束也可用于制造SRG。仅用一个偏振光学元件,例如所谓的退偏器,一种图案化的微延迟器阵列,就可以形成具有所需偏振分布的结构化激光束。使用这种堆叠元件能够直接控制所产生激光束偏振的调制周期。我们表明,这种方法能够制造出具有亚微米周期的SRG。此外,添加λ/4波片,这些有效地用于产生具有偏振奇点的圆柱矢量光束的元件,能够高效地形成叉形偏振光栅(FPG)并制造高阶叉形SRG。对所产生的FPG的参数进行完全控制是可行的。我们通过仅向退偏器添加一阶和二阶λ/4波片以及半波片,展示了高阶(高达12阶)FPG的形成。在这项工作中,我们对使用这些堆叠偏振元件形成的各种类型SRG的参数进行了数值和实验研究,并展示了这种方法在对通常也用作偏振传感器的光敏材料进行激光加工方面的巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fffc/10893159/560b008e9f9d/sensors-24-01166-g001.jpg

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