• Acta Optica Sinica
  • Vol. 43, Issue 5, 0519001 (2023)
Qiangshuang Li1、2, Changming Sun1、2, Shuzhen Fan3、4, and Haiwei Du1、2、*
Author Affiliations
  • 1School of Measuring and Optical Engineering, Nanchang Hangkong University, Nanchang 330063, Jiangxi, China
  • 2Key Laboratory of Nondestructive Testing, Ministry of Education, Nanchang Hangkong University, Nanchang 330063, Jiangxi, China
  • 3Center for Optics Research and Engineering, Shandong University, Qingdao 266237, Shandong, China
  • 4Key Laboratory of Laser & Infrared System, Ministry of Education, Shandong University, Qingdao 266237, Shandong, China
  • show less
    DOI: 10.3788/AOS221666 Cite this Article Set citation alerts
    Qiangshuang Li, Changming Sun, Shuzhen Fan, Haiwei Du. Tunable Broadband Terahertz Wave Generation Based on Optical Rectification Effect of Shaped Ultrashort Laser Pulses Interacting with GaSe Crystal[J]. Acta Optica Sinica, 2023, 43(5): 0519001 Copy Citation Text show less
    References

    [1] Hafez H A, Chai X, Ibrahim A et al. Intense terahertz radiation and their applications[J]. Journal of Optics, 18, 093004(2016).

    [2] Schmuttenmaer C A. Exploring dynamics in the far-infrared with terahertz spectroscopy[J]. Chemical Reviews, 104, 1759-1779(2004).

    [3] Ferguson B, Zhang X C. Materials for terahertz science and technology[J]. Nature Materials, 1, 26-33(2002).

    [4] Li Y F, Wang X M, Cao L H et al. Research progress of the broadband terahertz source[J]. Journal of Terahertz Science and Electronic Information Technology, 14, 661-667(2016).

    [5] Zhang H T, Cai Y S, Wang Y et al. Research progress on the application of terahertz time domain spectroscopy in agriculture[J]. Laser & Optoelectronics Progress, 59, 2330001(2022).

    [6] Sun Y J, Wang J F. Research progress of terahertz time-domain spectroscopy in food, drugs, and environment[J]. Laser & Optoelectronics Progress, 59, 1600003(2022).

    [7] Zhang T, Huang H C, Zhang Z L et al. Detection of plastics based on terahertz time-domain spectroscopy[J]. Chinese Journal of Lasers, 49, 1311001(2022).

    [8] Khenata R, Bouhemadou A, Sahnoun M et al. Elastic, electronic and optical properties of ZnS, ZnSe and ZnTe under pressure[J]. Computational Materials Science, 38, 29-38(2006).

    [9] Shi W, Ding Y J, Fernelius N et al. Efficient, tunable, and coherent 0.18-5.27-THz source based on GaSe crystal[J]. Optics Letters, 27, 1454-1456(2002).

    [10] Shi W, Ding Y J. Tunable terahertz waves generated by mixing two copropagating infrared beams in GaP[J]. Optics Letters, 30, 1030-1032(2005).

    [11] Stothard D J M, Edwards T J, Walsh D et al. Line-narrowed, compact, and coherent source of widely tunable terahertz radiation[J]. Applied Physics Letters, 92, 141105(2008).

    [12] Aggarwal R L, Lax B, Favrot G. Noncollinear phase matching in GaAs[J]. Applied Physics Letters, 22, 329-330(1973).

    [13] Kawase K, Hatanaka T, Takahashi H et al. Tunable terahertz-wave generation from DAST crystal by dual signal-wave parametric oscillation of periodically poled lithium niobate[J]. Optics Letters, 25, 1714-1716(2000).

    [14] Huber R, Brodschelm A, Tauser F et al. Generation and field-resolved detection of femtosecond electromagnetic pulses tunable up to 41 THz[J]. Applied Physics Letters, 76, 3191-3193(2000).

    [15] Huang J G, Huang Z M, Tong J C et al. Intensive terahertz emission from GaSe0.91S0.09 under collinear difference frequency generation[J]. Applied Physics Letters, 103, 081104(2013).

    [16] Angelini V, Casalboni M, Grandolfo M et al. Exciton thermoabsorption of GaSe1-xSx solid solutions[J]. Physica Status Solidi (b), 105, 63-68(1981).

    [17] Weiner A M. Femtosecond pulse shaping using spatial light modulators[J]. Review of Scientific Instruments, 71, 1929-1960(2000).

    [18] Weiner A M. Ultrafast optical pulse shaping: a tutorial review[J]. Optics Communications, 284, 3669-3692(2011).

    [19] Zou H, Zhou C H. Femtosecond pulse shaping with space-time conversion technique[J]. Laser & Optronics Progress, 42, 2-7(2005).

    [20] Yao Y H, Lu C H, Xu S W et al. Femtosecond pulse shaping technology and its applications[J]. Acta Physica Sinica, 63, 184201(2014).

    [21] Shi S X, Chen G F, Zhao W[M]. Nonlinear optics, 164-138(2012).

    [22] Chen C W, Tang T T, Lin S H et al. Optical properties and potential applications of ɛ‑GaSe at terahertz frequencies[J]. Journal of the Optical Society of America B, 26, A58-A65(2009).

    [23] Cui D Y. Theoretical study of terahertz radiation generation based on optical method[D], 19-21(2012).

    [24] Chen X. Theoretical study of terahertz radiation intensity and conversion efficiency via optical rectification[D], 13-16(2014).

    [25] Dechant A, Lutz E. Wiener-Khinchin theorem for nonstationary scale-invariant processes[J]. Physical Review Letters, 115, 080603(2015).

    [26] Yang N, Du H W. THz pulse generation from shaped femtosecond laser pulses interaction with gas-plasma[J]. Optics Express, 22, 25494-25499(2014).

    Qiangshuang Li, Changming Sun, Shuzhen Fan, Haiwei Du. Tunable Broadband Terahertz Wave Generation Based on Optical Rectification Effect of Shaped Ultrashort Laser Pulses Interacting with GaSe Crystal[J]. Acta Optica Sinica, 2023, 43(5): 0519001
    Download Citation