Infrared and Laser Engineering, Volume. 51, Issue 2, 20210907(2022)

Evolution mechanism of transient optical properties of ultrafast laser-induced monocrystalline silicon

Xiaojie Liao, Suying Lin, and Bing Han
Author Affiliations
  • School of Electronic and Optical Engineering, Nanjing University of Science and Technology, Nanjing 210094, China
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    References(23)

    [1] Zhao Wanqin, Mei Xuesong, Wang Wenjun. Ultrashort pulse laser drilling of micro-holes (part 2)—experimental study[J]. Infrared and Laser Engineering, 48, 0242001(2019).

    [2] Zhang Jiaru, Guan Yingchun. Current status and research progress of surface functional microstructure of biomedical materials prepared by ultrafast laser[J]. Chinese Optics, 12, 199-213(2019).

    [3] Zhang Guodong, Cheng Guanghua, Zhang Wei. Research progress of ultrafast laser selective welding technology[J]. Chinese Optics, 13, 1209-1223(2020).

    [4] Su Yahui, Qin Tiantian, Xu Bing, et al. Fabrication and imaging of patterned microlens by femtosecond laser two-photon polymerization[J]. Optics and Precision Engineering, 28, 2629-2635(2020).

    [5] Miao Fei, Zhang Ling, Feng Dejun, et al. Long period fiber gratings were fabricated by 800 nm femtosecond laser[J]. Optics and Precision Engineering, 20, 685-691(2012).

    [6] Nejadmalayeri A H, Herman P R, Burghoff J, et al. Inscription of optical waveguides in crystalline silicon by mid-infrared femtosecond laser pulses[J]. Optics Letters, 30, 964-966(2005).

    [7] Kaemmer H, Matthaeus G, Nolte S, et al. In-volume structuring of silicon using picosecond laser pulses[J]. Applied Physics A, 124, 302(2018).

    [8] Wang X, Yu X, Berg M, et al. Nanosecond laser writing of straight and curved waveguides in silicon with shaped beams[J]. Journal of Laser Applications, 32, 022002(2020).

    [9] Zazo R, Solis J, Sanchez-Gil J A, et al. Deep UV laser induced periodic surface structures on silicon formed by self-organization of nanoparticles[J]. Applied Surface Science, 520, 146307(2020).

    [10] [10] Gao Y F, Yu C Y, Han B, et al. Picosecond laserinduced periodic surface structures (LIPSS) on crystalline silicon [J]. Surfaces Interfaces, 2020, 19: 100538.

    [11] Ji L, Lv X, Wu Y, et al. Hydrophobic light-trapping structures fabricated on silicon surfaces by picosecond laser texturing and chemical etching[J]. Journal of Photonics for Energy, 5, 053094(2015).

    [12] Taylor L L, Scott R E, Jie Q. Integrating two-temperature and classical heat accumulation models to predict femtosecond laser processing of silicon[J]. Optical Materials Express, 8, 648(2018).

    [13] Tsibidis G D, Stratakis E, Aifantis K E. Thermoplastic deformation of silicon surfaces induced by ultrashort pulsed lasers in submelting conditions[J]. Journal of Applied Physics, 111, 701(2012).

    [14] Li Zhiming, Nie Jinsong, Hu Yuze, et al. Heat accumulation effect of high frequency femtosecond laser on silicon ablation[J]. Laser & Infrared, 47, 410-415(2017).

    [15] [15] Mao S S, Mao X L, Greif R, et al. Simulation of infrared picosecond laserinduced electron emission from semiconducts[J]. Applied Surface Science, 1998, 127129: 206211.

    [16] [16] Tsibidis G D, Barberoglou M, Loukakos P A, et al. Dynamics of ripple fmation on silicon surfaces by ultrasht laser pulses in subablation conditions[J]. Physical Review B, 2012, 86: 115316.

    [17] Jellison G E. Optical absorption of silicon between 1.6 and 4.7 eV at elevated temperatures[J]. Applied Physics Letters, 41, 180-182(1982).

    [18] Boggess T, Bohnert K M, Mansour K, et al. Simultaneous measurement of the two-photon coefficient and free-carrier cross section above the bandgap of crystalline silicon[J]. IEEE Journal of Quantum Electronics, 22, 360-368(1986).

    [19] Svantesson K G, Nilsson N G. Determination of the temperature-dependence of the free carrier and interband absorption in silicon AT 1.06 MU-M[J]. Journal of Physics C Solid State Physics, 12, 3837-3842(1979).

    [20] [20] Shao J, Jin G, Wang T. Theetical research on damage mechanism of ultrafast laser ablation crystal silicon [C] International Symposium on Photoelectronic Detection Imaging 2013: High Power Lasers Applications. International Society f Optics Photonics, 2013.

    [21] Felice G, Jijil J N, Rosalba F, et al. Analysis of nascent silicon phase-change gratings induced by femtosecond laser irradiation in vacuum[J]. Scientific Reports, 8, 12498(2018).

    [22] Mahmoud A M, Liberal I, Engheta N, et al. Dipole-dipole interactions mediated by epsilon-and-mu-near-zero waveguide supercoupling[J]. Optical Materials Express, 7, 415-424(2017).

    [23] [23] Derrien J Y, Bulgakova N M. Modeling of silicon in femtosecond laserinduced modification regimes: Accounting f ambipolar diffusion [C]Society of Photooptical Instrumentation Engineers. International Society f Optics Photonics, 2017.

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    Xiaojie Liao, Suying Lin, Bing Han. Evolution mechanism of transient optical properties of ultrafast laser-induced monocrystalline silicon[J]. Infrared and Laser Engineering, 2022, 51(2): 20210907

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    Paper Information

    Category: Special issue-Laser technology and its application

    Received: Nov. 25, 2021

    Accepted: --

    Published Online: Mar. 21, 2022

    The Author Email:

    DOI:10.3788/IRLA20210907

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