Acta Photonica Sinica, Volume. 54, Issue 6, 0614001(2025)
Study on LD Pumped Er∶YSGG Cascaded Laser at Room Temperature
[1] SANAMYAN T, EVANS J W, MCDANIEL S A et al. Path to doubling the efficiency of mid-IR erbium lasers[J]. Optics Express, 25, 16452-16457(2017).
[2] ZHOU Song, LI Maozhong, JIANG Jie et al. Solid-state mid-infrared laser technology research progress[J]. Infrared Technology, 41, 391-399(2019).
[3] ŠVEJKAR R, ŠULC J, JELÍNKOVÁ H et al. Er-doped crystalline active media for ~3 μm diode-pumped lasers.[J]. Progress in Quantum Electronics, 74, 100276(2020).
[4] LUPEI V, GEORGESCU S. Erbium 3 µm laser as an upconversion system[J]. Optical Engineering, 35, 1265-1272(1996).
[5] POLLACK S A, CHANG D B. Ion-pair upconversion pumped laser-emission in Er3+ ions in YAG, YLF, SrF2 and CaF2 crystals[J]. Journal of Applied Physics, 64, 2885-2893(1988).
[6] HUBER G, CLAUSENI R, LIKAMWA P et al. Er3+:YLiF4 continuous wave cascade laser operation at 1 620 and 2 810 nm at room temperature[J]. Applied Physics Letters, 62, 541-543(1993).
[7] WANG Qing, GAO Chunqing. Research progress on eye-safe all-solid-state single-frequency lasers[J]. Chinese Journal of Lasers, 48, 0501004(2021).
[8] WANG Kaixin, GAO Chunqing, LIN Zhifeng et al. 1645 nm coherent Doppler wind lidar with a single-frequency Er∶YAG laser[J]. Optics Express, 28, 14694-14704(2020).
[9] SANAMYAN T. Diode pumped cascade Er∶Y2O3 laser[J]. Laser Physics Letters, 12, 125804(2015).
[10] SANAMYAN T. Efficient cryogenic mid-IR and eye-safe Er∶YAG laser[J]. Journal of the Optical Society of America B, 33, D1-D6(2016).
[11] HAN Zhiyuan, SUN Dunlu, ZHANG Huili et al. 962 nm LD end-pumped Er∶YSGG cascade pulsed lasers at room temperature[J]. Infrared Physics & Technology, 127, 104432(2022).
[12] TIAN Ye, WANG Sibo, QU Bo et al. 3 μm high⁃efficiency Er∶YAG cyclic cascade pulse laser[J]. Chinese Journal of Lasers, 50, 0701006(2023).
[13] TER-GABRIELYAN N, FROMZEL V. Cascade generation at 1.62, 1.73 and 2.8 µm in the Er∶YLF Q-switched laser[J]. Optics Express, 27, 20199-20210(2019).
[14] ARBABZADAH E, CHARD S, AMRANIA H et al. Comparison of a diode pumped Er∶YSGG and Er∶YAG laser in the bounce geometry at the 3 μm transition[J]. Optics Express, 19, 25860-25865(2011).
[15] GEORGESCU S, LUPEI V, LUPEI A et al. Concentration effects on the up-conversion from the 4I13/2 level of Er3+ in YAG[J]. Optics Communications, 81, 186-192(1991).
[16] POLLANU M, GRAF T, BALMER J E et al. Explanation of the cw operation of the Er3+ 3 μm crystal laser[J]. Physical Review A, 49, 3990-3996(1994).
[17] NORMANI S, LOIKO P, BASYROVA L et al. Mid-infrared emission properties of erbium-doped fluorite-type crystals[J]. Optical Materials Express, 13, 1836-1851(2023).
[18] HU Lunzhen, SUN Dunlu, LUO Jianqiao et al. Effect of Er3+ concentration on spectral characteristic and 2.79 μm laser performance of Er∶YSGG crystal[J]. Journal of Luminescence, 226, 117502(2020).
[19] TIKERPAE M, KING T A, JACKSON S D. Theoretical comparison of Er3+-doped crystal lasers[J]. Journal of Modern Optics, 45, 1269-1284(1998).
[20] SU Jing, YANG Cuihong, LI Qingfang et al. Optical spectroscopy of Er∶YSGG laser crystal[J]. Journal of Luminescence, 130, 1546-1550(2010).
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Shihui GUAN, Yang YU, Yusong JIAO, Chunqing GAO. Study on LD Pumped Er∶YSGG Cascaded Laser at Room Temperature[J]. Acta Photonica Sinica, 2025, 54(6): 0614001
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Received: Mar. 28, 2025
Accepted: May. 19, 2025
Published Online: Jul. 14, 2025
The Author Email: Chunqing GAO (gao@bit.edu.cn)