Chinese Journal of Lasers, Volume. 49, Issue 18, 1801005(2022)
Experimental Study of Near-Infrared to Mid-Infrared Laser Output Based on Single Resonant Optical Parametric Oscillator
[1] Guo L, Chen H X, Zhang X B et al. Broadband yellow-orange laser output based on chirp structure MgO∶PPLN sum-frequency[J]. Laser & Optoelectronics Progress, 57, 091901(2020).
[2] Wang Q, Qi L, Wang R Y et al. Research progress of mid infrared laser via intra-pulse difference frequency generation of femtosecond laser[J]. Laser & Optoelectronics Progress, 58, 1700001(2021).
[3] Bekman H H P T, van den Heuvel J C, van Putten F J M et al. Development of a mid-infrared laser for study of infrared countermeasures techniques[J]. Proceedings of SPIE, 5615, 27-38(2004).
[4] Nelson D D, Shorter J H, McManus J B et al. Sub-part-per-billion detection of nitric oxide in air using a thermoelectrically cooled mid-infrared quantum cascade laser spectrometer[J]. Applied Physics B, 75, 343-350(2002).
[5] Yao Z J, Li Y J, Song Z et al. Continuous-wave single-frequency 1.5 μm laser based on all-solid-state unidirectional traveling-wave ring cavity[J]. Chinese Journal of Lasers, 48, 0501010(2021).
[6] Tai Z Y, Hou F Y, Wang M M et al. Intensity noise analysis of a fibre laser after passing through an optical mode cleaner[J]. Acta Physica Sinica, 63, 194203(2014).
[7] Wang Q Q, Feng J X, Jiang Z Y et al. Investigation on improving the output performance of fiber laser using Mach Zehnder interferometer[J]. Journal of Quantum Optics, 26, 71-76(2020).
[8] Wang F F, Nie H K, Liu J T et al. Miniaturized widely tunable MgO∶PPLN nanosecond optical parametric oscillator[J]. Chinese Journal of Lasers, 48, 0501015(2021).
[9] Zhang X B, Wang Y Z, Yao B Q et al. Development of mid-infrared CW QPM-OPO based on PPLN[J]. Laser Journal, 26, 7-9(2005).
[10] Mehmet M, Ast S, Eberle T et al. Squeezed light at 1550 nm with a quantum noise reduction of 12.3 dB[J]. Optics Express, 19, 25763-25772(2011).
[11] Shukla M K, Maji P S, Das R. Yb-fiber laser pumped high-power, broadly tunable, single-frequency red source based on a singly resonant optical parametric oscillator[J]. Optics Letters, 41, 3033-3036(2016).
[12] Devi K, Kumar S C, Ebrahim-Zadeh M. High-power, continuous-wave, single-frequency, all-periodically-poled, near-infrared source[J]. Optics Letters, 37, 5049-5051(2012).
[13] Aadhi A, Chaitanya N A, Singh R P et al. High-power, continuous-wave, solid-state, single-frequency, tunable source for the ultraviolet[J]. Optics Letters, 39, 3410-3413(2014).
[14] Boyd G D, Kleinman D A. Parametric interaction of focused Gaussian light beams[J]. Journal of Applied Physics, 39, 3597-3639(1968).
[15] Lowenthal D D. CW periodically poled LiNbO3 optical parametric oscillator model with strong idler absorption[J]. IEEE Journal of Quantum Electronics, 34, 1356-1366(1998).
[16] Vainio M, Peltola J, Persijn S et al. Thermal effects in singly resonant continuous-wave optical parametric oscillators[J]. Applied Physics B, 94, 411-427(2008).
[17] Guha S. Focusing dependence of the efficiency of a singly resonant optical parametric oscillator[J]. Applied Physics B, 66, 663-675(1998).
[18] Guo Y R, Lu H D, Xu M Z et al. Investigation about the influence of longitudinal-mode structure of the laser on the relative intensity noise properties[J]. Optics Express, 26, 21108-21118(2018).
[19] Lu H D, Su J, Zheng Y H et al. Physical conditions of single-longitudinal-mode operation for high-power all-solid-state lasers[J]. Optics Letters, 39, 1117-1120(2014).
[20] Guo Y R, Peng W N, Su J et al. Influence of the pump scheme on the output power and the intensity noise of a single-frequency continuous-wave laser[J]. Optics Express, 28, 5866-5874(2020).
Get Citation
Copy Citation Text
Hailong Wang, Huiqi Yang, Jing Su, Huadong Lu. Experimental Study of Near-Infrared to Mid-Infrared Laser Output Based on Single Resonant Optical Parametric Oscillator[J]. Chinese Journal of Lasers, 2022, 49(18): 1801005
Category: laser devices and laser physics
Received: Jan. 5, 2022
Accepted: Jan. 25, 2022
Published Online: Aug. 10, 2022
The Author Email: Lu Huadong (luhuadong@sxu.edu.cn)