• Laser & Optoelectronics Progress
  • Vol. 60, Issue 16, 1609001 (2023)
Huabin Wang1,2, Yu He1,2, and Lixin Zhao1,2,*
Author Affiliations
  • 1State Key Laboratory of Optical Technologies on Nano-Fabrication and Micro-Engineering, Institute of Optics and Electronics, Chinese Academy of Sciences, Chengdu 610209, Sichuan, China
  • 2University of Chinese Academy of Sciences, Beijing 100049, China
  • show less
    DOI: 10.3788/LOP222978 Cite this Article Set citation alerts
    Huabin Wang, Yu He, Lixin Zhao. Holographic Double-Sided Photolithography Based on Improved Gerchberg-Saxton Algorithm[J]. Laser & Optoelectronics Progress, 2023, 60(16): 1609001 Copy Citation Text show less
    References

    [1] Mitchell J I, Park S J, Watson C A et al. Laser direct write of silicon nanowires[J]. Optical Engineering, 50, 104301(2011).

    [2] Zhang Y L, Chen Q D, Xia H et al. Designable 3D nanofabrication by femtosecond laser direct writing[J]. Nano Today, 5, 435-448(2010).

    [3] Jia Y C, Wang S X, Chen F. Femtosecond laser direct writing of flexibly configured waveguide geometries in optical crystals: fabrication and application[J]. Opto-Electronic Advances, 3, 190042(2020).

    [4] Zhang J, Tan D Z, Cao K Q et al. Large area patterning of ultra-high thermal-stable structural colors in transparent solids[J]. Chinese Optics Letters, 20, 030501(2022).

    [5] Chen F. 3D direct writing of bandgap tunable nanocrystals in transparent material[J]. Advanced Photonics, 4, 010502(2022).

    [6] Chen Y F. Nanofabrication by electron beam lithography and its applications: a review[J]. Microelectronic Engineering, 135, 57-72(2015).

    [7] Altissimo M. E-beam lithography for micro-nanofabrication[J]. Biomicrofluidics, 4, 026503(2010).

    [8] Joshi-Imre A, Bauerdick S. Direct-write ion beam lithography[J]. Journal of Nanotechnology, 2014, 1-26(2014).

    [9] Park J S, Zhang S Y, She A L et al. All-glass, large metalens at visible wavelength using deep-ultraviolet projection lithography[J]. Nano Letters, 19, 8673-8682(2019).

    [10] Kunwar P, Jannini A V S, Xiong Z et al. High-resolution 3D printing of stretchable hydrogel structures using optical projection lithography[J]. ACS Applied Materials & Interfaces, 12, 1640-1649(2020).

    [11] Liu X, Li R, Yuan X et al. Fast customization of microneedle arrays by static optical projection lithography[J]. ACS Applied Materials & Interfaces, 13, 60522-60530(2021).

    [12] Huang L, Liu C X, Zhang H et al. Technology of static oblique lithography used to improve the fidelity of lithography pattern based on DMD projection lithography[J]. Optics & Laser Technology, 157, 108666(2023).

    [13] Lin W, Chen D H, Chen S C. Emerging micro-additive manufacturing technologies enabled by novel optical methods[J]. Photonics Research, 8, 1827-1842(2020).

    [14] Geisler E, Lecompère M, Soppera O. 3D printing of optical materials by processes based on photopolymerization: materials, technologies, and recent advances[J]. Photonics Research, 10, 1344-1360(2022).

    [15] Ma P, Yang C L, Hu S et al. Studies on URE-2000S-a new single & double-side UV depth-lithography system[J]. Micronanoelectronic Technology, 42, 388-391(2005).

    [16] Gao Y Y. Double-sided quasi-exposure equipment[J]. Equipment for Electronic Products Manufacturing, 23, 26-28(1994).

    [17] Yang D, Liu L P, Gong Q H et al. Rapid two-photon polymerization of an arbitrary 3D microstructure with 3D focal field engineering[J]. Macromolecular Rapid Communications, 40, 1900041(2019).

    [18] Gerchberg R W. A practical algorithm for the determination of phase from image and diffraction plane pictures[J]. Optik, 35, 237-246(1972).

    [19] Yang G Z, Dong B Z, Gu B Y et al. Gerchberg-Saxton and Yang–Gu algorithms for phase retrieval in a nonunitary transform system: a comparison[J]. Applied Optics, 33, 209-218(1994).

    [20] Kuzmenko A, Iezhov P, Kim J T. Weighting iterative Fourier transform algorithm for kinoform implemented with phase-only SLM[C], DTuC37(2011).

    [21] Wu Y, Wang J, Chen C et al. Adaptive weighted Gerchberg-Saxton algorithm for generation of phase-only hologram with artifacts suppression[J]. Optics Express, 29, 1412-1427(2021).

    [22] Makey G, Yavuz Ö, Kesim D K et al. Breaking crosstalk limits to dynamic holography using orthogonality of high-dimensional random vectors[J]. Nature Photonics, 13, 251-256(2019).

    [23] Zhang J Z, Pégard N, Zhong J S et al. 3D computer generated holography by nonconvex optimization[J]. Optica, 4, 1306-1313(2017).