• Acta Photonica Sinica
  • Vol. 52, Issue 2, 0214001 (2023)
Yuxia ZHOU, Aiziheerjiang Abulikemu, Dana Jiashaner, and Taximaiti Yusufu*
Author Affiliations
  • Xinjiang Key Laboratory for Luminescence Minerals and Optical Functional Materials,School of Physics and Electronic Engineering,Xinjiang Normal University,Urumqi 830054,China
  • show less
    DOI: 10.3788/gzxb20235202.0214001 Cite this Article
    Yuxia ZHOU, Aiziheerjiang Abulikemu, Dana Jiashaner, Taximaiti Yusufu. High Energy,High Beam Quality Idler-resonant mid-infrared Optical Parametric Oscillator Based on KTiOAsO4[J]. Acta Photonica Sinica, 2023, 52(2): 0214001 Copy Citation Text show less
    References

    [1] D GARBUZOV, I KUDRYASHOV, M DUBINSKII. 110W (0.9J) pulsed power from resonantly diode-laser-pumped 1.6 μm Er:YAG laser. Applied Physics Letters, 87, 121101(2005).

    [2] N TAKEI, S SUZUKI, F KANNARI. 20Hz operation of an eye-safe cascade Raman laser with a Ba (NO3)2 crystal. Applied Physics B, 74, 521-527(2002).

    [3] K ASABA, T HOSOKAWA, Y HATSUDA et al. Development of 1.54μm near-infrared Q-switched laser. International Society for Optics and Photonics, 1207, 164-171(1990).

    [4] M KASKOW, L GORAJEK, W ZENDZIAn et al. MW peak power KTP-OPO-based “eye-safe” transmitter. Opto -Electronics Review, 26, 188-193(2018).

    [5] Xin DING, Chen FAN, Quan SHENG et al. 5.2-W high-repetition-rate eye-safe laser at 1525nm generated by Nd:YVO4-YVO4 stimulated Raman conversion. Optics Express, 22, 29111-29116(2014).

    [6] M VAINIO, L HALONEN. Mid-infrared optical parametric oscillators and frequency combs for molecular spectroscopy. Physical Chemistry Chemical Physics, 18, 4266-4294(2016).

    [7] Haoze CAI, Lingbing BU, Yu GONG et al. Absorption spectrum characteristics of NO2 near 3.4 μm and its applicationin differential absorption lidar. Acta Photonica Sinica, 48, 0701001(2019).

    [8] M W SIGRIST, R BARTLOME, D MARINOV et al. Trace gas monitoring with infrared laser- based detection schemes. Applied Physics B, 90, 289-300(2008).

    [9] Xiaolong DONG, Baitao ZHANG, Jingliang HE et al. High-power 1.5 and 3.4μm intracavity KTA OPO driven by a diode-pumped Q-switched Nd:YAG laser. Optics Communications, 282, 1668-1670(2009).

    [10] K DHOLAKIA, N B SIMPSON, M J PADGETT et al. Second-harmonic generation and the orbital angular momentum of light. Physical Review A, 54, R3742(1996).

    [11] Yan LI, Zhiyuan ZHOU, Dongsheng DING et al. Sum frequency generation with two orbital angular momentum carrying laser beams. Journal of the Optical Society of America B, 32, 407-411(2015).

    [12] Lin XU, Hoyin CHAN, S U ALAM et al. High-energy, near-and mid-IR picosecond pulses generated by a fiber-MOPA-pumped optical parametric generator and amplifier. Optics Express, 23, 12613-12618(2015).

    [13] M ABABAIKE, Shutong WANG, P AIERKEN et al. Near and mid-infrared optical vortex parametric oscillator based on KTA. Scientific Reports, 11, 1-6(2021).

    [14] A M WARRIER, J LIN, H M PASK et al. Highly efficient picosecond diamond Raman laser at 1240 and 1485nm. Optics Express, 22, 3325-3333(2014).

    [15] L K CHENG, L T CHENG, J D BIERLEIN et al. Properties of doped and undoped crystals of single domain KTiOAsO4. Applied physics letters, 62, 346-348(1993).

    [16] Q B SUN, H J LIU, N HUANG et al. High energy and high efficiency 3.4μm extracavity KTA optical parametric oscillator. Laser Physics Letters, 8, 16-20(2011).

    [17] M TIIHONEN, V PASISKEVICIUS, F LAURELL. Spectral and spatial limiting in an idler-resonant PPKTP optical parametric oscillator. Optics Communications, 250, 207-211(2005).

    [18] Sujian NIU, P AIERKEN, M ABABAIKE et al. Widely tunable, high-energy, mid-infrared (2.2-4.8μm) laser based on a multi-grating MgO: PPLN optical parametric oscillator. Infrared Physics & Technology, 104, 103121(2020).

    [19] Bingyan CHEN, Yuheng WANG, Yongji YU et al. Picosecond mid-infrared 3.8μm MgO: PPLN optical parametric oscillator laser with high peak power. Current Optics and Photonics, 5, 186-190(2021).

    [20] M TIIHONEN, V PASISKEVICIUS, F LAURELL. Spectral and spatial limiting in an idler-resonant PPKTP optical parametric oscillator. Optics Communications, 250, 207-211(2005).

    [21] Fen BAI, Qingpu WANG, Zhaojun LIU et al. Idler-resonant optical parametric oscillator based on KTiOAsO4. Applied Physics B, 112, 83-87(2013).

    [22] Yang HE, Fei CHEN, Deyang YU et al. Improved conversion efficiency and beam quality of miniaturized mid-infrared idler-resonant MgO: PPLN optical parametric oscillator pumped by all-fiber laser. Infrared Physics & Technology, 95, 12-18(2018).

    [23] S PARSA, S C KUMAR, B NANDY et al. Yb-fiber-pumped, high-beam-quality, idler-resonant mid-infrared picosecond optical parametric oscillator. Optics Express, 27, 25436-25444(2019).

    [24] B NANDY, S C KUMAR, M EBRAHIM-ZADEH. Yb-fiber-pumped high-average-power picosecond optical parametric oscillator tunable across 1.3-1.5μm. Optics Express, 30, 16340-16350(2022).

    [25] Jun MENG, Chen LI, Zhenhua CONG et al. Investigations on beam quality improvement of an NCPM-KTA-based high energy optical parametric oscillator using an unstable resonator with a Gaussian reflectivity mirror. Chinese Optics Letters, 20, 091401(2022).

    Yuxia ZHOU, Aiziheerjiang Abulikemu, Dana Jiashaner, Taximaiti Yusufu. High Energy,High Beam Quality Idler-resonant mid-infrared Optical Parametric Oscillator Based on KTiOAsO4[J]. Acta Photonica Sinica, 2023, 52(2): 0214001
    Download Citation