
铒玻璃 (Er Yb Glass)
案例 铒玻璃 (Er, Yb: glass) 案例(一)用于1535nm激光器尺寸:Ø2*7 (+/-0.1) mm;掺杂:Yb 20%;Er 0.5%;镀膜 S1:HT (T>95%)@940+/-10 nm + HR(R>99.5%)@1535 nm,AOIº...
案例
铒玻璃 (Er, Yb: glass) 案例(一)用于1535nm激光器尺寸:Ø2*7 (+/-0.1) mm;掺杂:Yb 20%;Er 0.5%;镀膜 S1:HT (T>95%)@940+/-10 nm + HR(R>99.5%)@1535 nm,AOIº =0;涂层 S2:AR (R<0.25%) @1535 nm
铒玻璃 (Er, Yb: glass) 案例(二)用于1540nm激光器A、B:AR@1540 R<0.5%;C、D:AR@940 R<0.5%;E、F:RE R@940>95%;LIDT(用于涂层表面和材料):0.8×10*5 J/m2(脉冲持续时间 10-40 纳秒)
铒玻璃 (Er, Yb: glass) 案例(三)规格:φ6×50 mm;Er掺杂浓度: 0.52%;Yb掺杂浓度: 22.0%
特点
吸收带宽荧光寿命长光学质量高眼睛安全斜率效率高
应用
光通信
铒玻璃光纤放大器距离和激光雷达
1535眼睛安全激光
参考文献
[1] B Y Z A , A M L , A J L , et al. Optical properties of Er 3+ /Yb 3+ co-doped phosphate glass system for NIR lasers and fiber amplifiers[J]. Ceramics International, 2018, 44( 18):22467-22472.[2] Langar A , Bouzidi C , Elhouichet H , et al. Er–Yb codoped phosphate glasses with improved gain characteristics for an efficient 1.55μm broadband optical amplifiers[J]. Journal of Luminescence, 2014, 148:249-255.[3] A C B , A T M , B S R D , et al. Sensitizing effect of Yb 3+ ions on photoluminescence properties of Er 3+ ions in lead phosphate glasses: Optical fiber amplifiers[J]. Optical Materials, 2018, 86:256-269.[4] Ryabtsev G I , Bezyazychnaya T V , Parastchuk V V , et al. Spectral and temporal properties of diode-pumped Er, Yb: glass laser[J]. Optics Communications, 2005, 252(4-6):301-306.[5] Francini R , Giovenale F , Grassano U M , et al. Spectroscopy of Er and Er–Yb-doped phosphate glasses[J]. Optical Materials, 2000, 13(4):417-425.[6] Sendova M , JA Jiménez, Honaman C . Rare earth-dependent trend of the glass transition activation energy of doped phosphate glasses: Calorimetric analysis[J]. Journal of Non-Crystalline Solids, 2016, 450:18-22.[7] Chen C , He R , Tan Y , et al. Optical ridge waveguides in Er3+/Yb3+ co-doped phosphate glass produced by ion irradiation combined with femtosecond laser ablation for guided-wave green and red upconversion emissions[J]. Optical Materials, 2016.[8] Balaji S , D Ghosh, Biswas K , et al. Insights into Er 3+ Yb 3+ energy transfer dynamics upon infrared ~1550nm excitation in a low phonon fluoro-tellurite glass system[J]. Journal of Luminescence, 2017, 187:441-448.[9] Feng S , Fei L , Li S , et al. The fractional thermal factor in LD-pumped Yb3+/Er3+ codoped phosphate glass. IEEE, 2009.[10] Dan G , Mihailov S J , Walker R B , et al. Bragg Gratings Made With a Femtosecond Laser in Heavily Doped Er–Yb Phosphate Glass Fiber[J]. IEEE Photonics Technology Letters, 2007, 19(12):943-945.[11] Zhu M , Tongzhao G U . Spectroscopic properties of Er3+/Yb3+ co-doped tantalum-niobium phosphate glasses for optical waveguide laser and amplifier[C]// International Conference on Microwave & Millimeter Wave Technology. IEEE Xplore, 2004.[12] Danger T , Huber G , DeNker B I , et al. Diode-pumped cw laser around 1.54 m using Yb, Er-doped silico-boro-phosphate glass[C]// Conference on Lasers & Electro-optics. IEEE, 1998.[13] S Jiang, SJ Hamlin, JD Myers,等. High-average-power 1.54-μm Er3+:Yb3+-doped phosphate glass laser. 1996.[14] Osellame R , Valle G D , Chiodo N , et al. Mode-locked and single-longitudinal-mode waveguide lasers fabricated by femtosecond laser pulses in Er:Yb-doped phosphate glass. IEEE, 2007.[15] Valles J A , Rebolledo M A , J Cortés. Full characterization of packaged Er-Yb-codoped phosphate glass waveguides[J]. IEEE Journal of Quantum Electronics, 2006, 42(2):152-159.[16] Aseev V A , Ulyashenko A M , Nikonorov N V , et al. Comparison of highly doped Ytterbium-erbium phosphate and silicate glasses for microchip lasers[C]// International Conference on Advanced Optoelectronics & Lasers. IEEE, 2005.[17] Qiu T , Li L , Temyanko V , et al. Generation of high power 1535nm light from a short cavity cladding pumped Er:Yb phosphate fiber laser[M]. 2004.[18] Buchenkov V A , Krylov A A , Mak A A . 12 mJ 10 Hz Diode Pumped A/O Q-switched Yb:Er:Glass Laser[C]// 2018:48-48.[19] Kalashnikov V L , Shcherbitsky V G , Kuleshov N V , et al. Optimization of passively Q-switched Er:glass laser[C]// Lasers and Electro-Optics, 2002. CLEO ’02. Technical Digest. Summaries of Papers Presented at the. IEEE, 2002.[20] Simondi-Teisseire B , Viana B , Lejus A M , et al. Room-temperature CW laser operation at ~1.55 μm (eye-safe range) of Yb:Er and Yb:Er:Ce:Ca2Al2SiO7 crystals[J]. IEEE Journal of Quantum Electronics, 1996, 32(11):2004-2009.[21] Wu R , Hamlin S J , Myers J D , et al. Infrared image studies of diode-pumped Yb3+, Er3+:glass[C]// Conference on Lasers and Electro-Optics. 1996.[22] Tan F , Yu F , Wang L , et al. Enhancement in Laser Performance of Er3+/Yb3+ Co-doped Phosphate Glass Materials[J]. Journal of Wuhan University of Technology-Mater. Sci. Ed. 2015, 30(3):442-446.[23] Sattar A , Azzouz I M , Shafik M S , et al. Effect of sensitizers on the optical properties of Er3+ions in erbium glass lasers[C]// Workshop on Photonics & Its Application at Egyptian Engineering Faculties & Institutes. IEEE, 2002.[24] Kervevan L , Gilles H , Girard S , et al. Self-mixing laser Doppler velocimetry with a dual-polarization Yb:Er glass laser[J]. Applied Physics B, 2007, 86(1):169-176.[25] Karlsson G , Laurell F , Tellefsen J , et al. Development and characterization of Yb-Er laser glass for high average power laser diode pumping[J]. Applied Physics B, 2002, 75(1):41-46.[26] Vitkin V , Krylov A , Polishchuk A , et al. 40 Hz 1.3 mJ Q-switched Yb:Er:glass Laser[C]// 2018:50-50.[27] Bhardwaj A , Agrawal L , Pal S , et al. Optimization of passively Q -switched Er:Yb:Cr:phosphate glass laser: theoretical analysis and experimental results[J]. Applied Physics B, 2007, 86(2):293-301.[28] Kalashnikov V L , Shcherbitsky V G , Kuleshov N V , et al. Pulse energy optimization of passively Q-switched flash-lamp pumped Er:glass laser[J]. Applied Physics B, 2002, 75(1):35-39.[29] Summaries of papers presented at the Conference on Lasers and Electro-optics. 1999.[30] Third Workshop on Photonics and its Application at Egyptian Engineering Faculties and Institutes (Cat. No.02EX509)[C]// Workshop on Photonics & Its Application at Egyptian Engineering Faculties & Institutes. IEEE, 2002.
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