• Acta Photonica Sinica
  • Vol. 50, Issue 6, 50 (2021)
Fengqin HUANG, Tianlun SHEN, Jinhai SI, Tao CHEN, and Xun HOU
Author Affiliations
  • Shaanxi Key Lab of Information Photonic Technique, School of Electronic Science and Engineering, Xi'an Jiaotong University, Xi'an710049, China
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    DOI: 10.3788/gzxb20215006.0650104 Cite this Article
    Fengqin HUANG, Tianlun SHEN, Jinhai SI, Tao CHEN, Xun HOU. Temporal-spatial Dynamics of Femtosecond Time Resolved Plasma in Femtosecond Laser Induced Microstructure(Invited)[J]. Acta Photonica Sinica, 2021, 50(6): 50 Copy Citation Text show less
    References

    [1] A COUAIRON, A MYSYROWICZ. Femtosecond filamentation in transparent media. Physics Reports, 441, 47-189(2007).

    [2] C GAUDIUSO, A VOLPE, A ANCONA. One-step femtosecond laser stealth dicing of quartz. Micromachines, 11, 327(2020).

    [3] Ke SUN, Shengzhi SUN, Jianrong QIU. Review on research progress of glasses used for optical storage. Laser & Optoelectronics Progress, 57, 111407(2020).

    [4] Jianrong QIU. Femtosecond laser-induced microstructures in glasses and applications in micro-optics. The Chemical Record, 4, 50-58(2004).

    [5] Baoshan GUO, Jingya SUN, Yongfeng LU et al. Ultrafast dynamics observation during femtosecond laser-material interaction. International Journal of Extreme Manufacturing, 1(2019).

    [6] Xianglei MAO, S S MAO, R E RUSSO. Imaging femtosecond laser-induced electronic excitation in glass. Applied Physics Letters, 82, 697-699(2003).

    [7] Quan SUN, Hongbing JIANG, Yi LIU et al. Measurement of the collision time of dense electronic plasma induced by a femtosecond laser in fused silica. Optics Letters, 30, 320-322(2005).

    [8] Changji PAN, Lan JIANG, Qingsong WANG et al. Temporal-spatial measurement of electron relaxation time in femtosecond laser induced plasma using two-color pump-probe imaging technique. Applied Physics Letters, 112, 191101(2018).

    [9] Feifei WANG, Changji PAN, Jingya SUN et al. Direct observation of structure-assisted filament splitting during ultrafast multiplepulse laser ablation. Optics Express, 27, 10050-10057(2019).

    [10] W GAWELDA, D PUERTO, J SIEGEL et al. Ultrafast imaging of transient electronic plasmas produced in conditions of femtosecond waveguide writing in dielectrics. Applied Physics Letters, 93, 121109(2008).

    [11] Fengqin HUANG, Jinhai SI, Tao CHEN et al. Temporal-spatial dynamics of electronic plasma in femtosecond laser induced damage. Optics Express, 29, 14658-14667(2021).

    [12] B C STUART, MD FEIT, S HERMAN et al. Nanosecond-to-femtosecond laser-induced breakdown in dielectrics. Physical Review B, 53, 1749-1761(1996).

    [13] S S MAO, F QUÉRÉ, S GUIZARD et al. Dynamics of femtosecond laser interactions with dielectrics. Applied Physics A, 79, 1695-1709(2004).

    [14] N M BULGAKOVA, R STOIAN, A ROSENFELD. Laser-induced modification of transparent crystals and glasses. Quantum Electronics, 40, 966-985(2010).

    [15] D G PAPAZOGLOU, S TZORTZAKIS. Physical mechanisms of fused silica restructuring and densification after femtosecond laser excitation. Optical Materials Express, 1, 625-632(2011).

    [16] A COUAIRON, L SUDRIE, M FRANCO et al. Filamentation and damage in fused silica induced by tightly focused femtosecond laser pulses. Physical Review B, 71, 125435(2005).

    Fengqin HUANG, Tianlun SHEN, Jinhai SI, Tao CHEN, Xun HOU. Temporal-spatial Dynamics of Femtosecond Time Resolved Plasma in Femtosecond Laser Induced Microstructure(Invited)[J]. Acta Photonica Sinica, 2021, 50(6): 50
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