Chinese Journal of Lasers, Volume. 49, Issue 23, 2301008(2022)
Transversely Excited Multi-Atmospheric-Pressure CO2 Laser
[1] Miller J L. The high-pressure absorption spectra of the CO2 10.6- and 9.4-μm laser bands[J]. Journal of Applied Physics, 49, 3076-3083(1978).
[2] Geiko P P, Tikhomirov A. Remote measurement of chemical warfare agents by differential absorption CO2 lidar[J]. Optical Memory and Neural Networks, 20, 71-75(2011).
[3] Dumitras D C, Banita S, Bratu A M et al. Ultrasensitive CO2 laser photoacoustic system[J]. Infrared Physics & Technology, 53, 308-314(2010).
[4] MrAa'zek J, Aubrecht J, Todorov F et al. CO2 laser-assisted preparation of transparent Eu2Ti2O7 thin films[J]. Ceramics International, 44, 9479-9483(2018).
[5] Tan C, Zhao L J, Chen M J et al. Combined studies of surface evolution and crack healing for the suppression of negative factors during CO2 laser repairing of fused silica[J]. Chinese Optics Letters, 19, 041402(2021).
[6] Holder D, Leis A, Buser M et al. High-quality net shape geometries from additively manufactured parts using closed-loop controlled ablation with ultrashort laser pulses[J]. Advanced Optical Technologies, 9, 101-110(2020).
[7] Chen L, Liu X D, Liu J et al. Microgroove etching with femtosecond laser on quartz glass surfaces[J]. Acta Optica Sinica, 40, 2314001(2020).
[8] Wang S Y, Ma Y W, Li X Y et al. Highly sensitive torsion sensor based on triangular-prism-shaped long-period fiber gratings[J]. Chinese Optics Letters, 19, 041202(2021).
[9] Jia Z N, Zhang T T, Li Z H et al. Fabrication of Fabry-Pérot optical microcavity array based on CO2 laser processing[J]. Laser & Optoelectronics Progress, 57, 231404(2020).
[10] Nafisah S, Sumatera I T, Tukiran Z et al. Laser technology applications in critical sectors: military and medical[J]. Journal of Electronic Voltage and Application, 2, 38-48(2021).
[11] Li D J, Zhou K, Cui A J et al. Multi-channel inverse synthetic aperture ladar imaging detection technology and experimental research[J]. Laser & Optoelectronics Progress, 58, 1811017(2021).
[12] Shi Y H, Cheng Z C, Peng Z G et al. Sub-picosecond NALM mode-locked fiber laser with 21 MHz-100 kHz repetition rate[J]. Chinese Journal of Lasers, 48, 0501013(2021).
[13] Yuzaile Y R, Awang N A, Zalkepali N U H H et al. Pulse compression in Q-switched fiber laser by using platinum as saturable absorber[J]. Optik, 179, 977-985(2019).
[14] Li H X, Lou Q H, Dong J X et al. Excimer laser plasma switch controlling laser pulse duration[J]. High Power Laser and Particle Beams, 18, 1090-1094(2006).
[15] Snyder R. A proliferation assessment of third generation laser uranium enrichment technology[J]. Science & Global Security, 24, 68-91(2016).
[16] Saini V K, Talwar S, Subrahmanyam V V V et al. Laser assisted isotope separation of lithium by two-step photoionization using time of flight mass-spectrometer[J]. Optics & Laser Technology, 111, 754-761(2019).
[17] von Bergmann H, Morkel F. Continuously wavelength tunable high pressure CO2 lasers[J]. Proceedings of SPIE, 9255, 92551Y(2015).
[18] Ding C L, Wan C Y. Multifrequency dynamical model of pulsed CO2 lasers[J]. Acta Physica Sinica, 55, 1165-1170(2006).
[19] Smith K, Thomson R M[M]. Computer modeling of gas lasers(1978).
[20] Lou Q H[M]. The pulse discharge gas laser, 47-48(1993).
[21] Yu D Y, Tan H Y[M]. Engineering optics(2014).
Get Citation
Copy Citation Text
Yue Lu, Ziren Zhu, Jinzhou Bai, Jinghan Ye, Rongqing Tan, Yijun Zheng, Yejun Li. Transversely Excited Multi-Atmospheric-Pressure CO2 Laser[J]. Chinese Journal of Lasers, 2022, 49(23): 2301008
Category: laser devices and laser physics
Received: Jan. 25, 2022
Accepted: Apr. 14, 2022
Published Online: Nov. 21, 2022
The Author Email: Zheng Yijun (yjzheng@mail.ie.ac.cn), Li Yejun (iamliyejun@163.com)