Laser Scanning Confocal Microscopy for Analyzing Optical Characteristics and Morphology of an Aspherical Microlens Array

被引:0
|
作者
Matital, R. P. [1 ]
Kolymagin, D. A. [1 ]
Pisarenko, A. V. [1 ]
Shcherbakov, D. A. [1 ]
Vitukhnovsky, A. G. [1 ,2 ]
机构
[1] Natl Res Univ, Moscow Inst Phys & Technol, Dolgoprudnyi 141700, Russia
[2] Russian Acad Sci, Lebedev Phys Inst, Moscow 119991, Russia
基金
俄罗斯科学基金会;
关键词
2PP-DLW; microoptical elements; microlens array; laser scanning confocal microscopy; FABRICATION; EFFICIENCY; TOTHEMA;
D O I
10.3103/S1541308X23040076
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
Aspherical microlenses and microlens arrays allow increasing efficiency of various optical devices. However, it is technologically challenging to produce these items. The problem arises from impossibility of making microlenses with an arbitrary profile in a characteristic size region of several tens of micrometers using traditional technologies like single-point diamond milling and thermal reflow. In this work, a precisely aligned combination of an aspherical microlens and a microlens array produced by the two-photon polymerization direct laser writing (2PP-DLW) is presented. This structure is designed and optimized using computer simulation methods. A unique photosensitive composition based on the methacrylate dye (derivative of benzylidene cyclopentanone) is used to produce the structures. A specific feature of the chosen composition is dependence of its mechanical and optical properties on the femtosecond radiation dose which could widely vary during the fabrication. The produced structures are investigated using laser scanning confocal microscopy, which allows reconstruction of the 3D image of the structures and detailed analysis of their morphological properties. The aspherical microlens aligned with the microlens array has a wide range of applications in production of complicated optical devices, optimized microobjective lenses for high-precision wave front sensing, and refractive X-ray lenses.
引用
收藏
页码:217 / 222
页数:6
相关论文
共 50 条
  • [1] Laser Scanning Confocal Microscopy for Analyzing Optical Characteristics and Morphology of an Aspherical Microlens Array
    R. P. Matital
    D. A. Kolymagin
    A. V. Pisarenko
    D. A. Shcherbakov
    A. G. Vitukhnovsky
    Physics of Wave Phenomena, 2023, 31 : 217 - 222
  • [2] Application of the Microlens Array in the projection of the Laser Scanning
    Wang, Lulu
    Li, Min
    Tan, Hai
    Zhou, Peng
    Bai, Yu
    Shen, Wenjiang
    Wu, Dongmin
    HOLOGRAPHY, DIFFRACTIVE OPTICS, AND APPLICATIONS VII, 2017, 10022
  • [3] Laser scanning confocal microscopy in materials engineering
    Tomastik, Jan
    Sebestova, Hana
    Ctvrtlik, Radim
    Schovanek, Petr
    18TH CZECH-POLISH-SLOVAK OPTICAL CONFERENCE ON WAVE AND QUANTUM ASPECTS OF CONTEMPORARY OPTICS, 2012, 8697
  • [4] Microlens array device for laser light shaping in laser scanning smart headlights
    Huang, Kuo-Yin
    Chang, Ke-Peng
    Chang, Yung-Peng
    Liu, Chun-Nien
    Cheng, Wood-Hi
    OPTICS EXPRESS, 2023, 31 (15) : 25307 - 25317
  • [5] Glass reflowed microlens array and its optical characteristics
    Lee, Sung-Kil
    Kim, Man Geun
    Jo, Kyung-Woo
    Lee, Jong-Hyun
    2007 IEEE/LEOS INTERNATIONAL CONFERENCE ON OPTICAL MEMS AND NANOPHOTONICS, 2007, : 75 - 76
  • [6] Multiscanning mode laser scanning confocal microscopy system
    Akturk, Mert
    Gumus, Gokhan
    Sarioglu, Baykal
    Gokdel, Y. Daghan
    TURKISH JOURNAL OF ELECTRICAL ENGINEERING AND COMPUTER SCIENCES, 2019, 27 (02) : 1081 - 1093
  • [7] Spectral imaging system on laser scanning confocal microscopy
    Zhang, Y.-H. (zhangyh@sibet.ac.cn), 1600, Chinese Academy of Sciences (22): : 1446 - 1453
  • [8] The application of laser scanning confocal microscopy to tribological research
    Hanlon, DN
    Todd, I
    Peekstok, E
    Rainforth, WM
    van der Zwaag, S
    WEAR, 2001, 251 : 1159 - 1168
  • [9] Abnormal Anterior Corneal Morphology in Diabetes Observed Using In Vivo Laser-scanning Confocal Microscopy
    Dehghani, Cirous
    Pritchard, Nicola
    Edwards, Katie
    Russell, Anthony W.
    Malik, Rayaz A.
    Efron, Nathan
    OCULAR SURFACE, 2016, 14 (04) : 507 - 514
  • [10] Measurement of Wenzel roughness factor by laser scanning confocal microscopy
    Ai Hongru
    Li Xiangqin
    Shi Shuyan
    Zhang Ying
    Liu Tianqing
    RSC ADVANCES, 2017, 7 (12) : 7052 - 7059