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Tm:YAG

當前位置: 首頁 ? Products ? 激光晶體 ? Tm:YAG
Tm:YAG

Tm:YAG在0.82μm波長范圍內的3H43H6躍遷上運行。它可以用波長范圍為0.78 – 0.8μm的高效二極管激光器泵浦。該過渡具有小的量子缺陷,可實現低散熱。為了獲得良好的能量存儲,激發態壽命可以很長,大約為毫秒。它還具有足夠的增益帶寬,可根據主體材料和工作溫度來支持亞ps長的脈沖。與單晶材料相比,透明陶瓷材料結合了單晶和玻璃的優點。通過固態反應和真空燒結來制造透明陶瓷材料。因此,它們不僅具有與單晶一樣優良的光學和熱性能,而且還具有大尺寸、高濃度的特點。此外,它們還具有其他優勢,例如制造周期短,成本較低和多功能樣品。

材料規格

Tm濃度公差(atm%)Tm:0.5~5at%
取向[111]<5o
平行性≤10″
垂直性≤5′
表面質量10-5?(MIL-O-13830A)
波前失真≤?0.125λ/25?mm?@632.8nm
表面平整度λ/8@632nm
通光孔徑>95%
倒角?0.15±0.05mm
尺寸D: 2~10mmL: 3~150mm
涂層AR: ≤0.25%?@2μm

物理和化學特性

激光躍遷3F43H6
激光波長1.87~2.16μm
折射率的溫度依賴性7.3 10-6/K
吸收截面7.5×10-21cm2
二極管泵浦帶785nm,?680nm
發射截面@ 2013nm2.9×10-20?cm2
熒光壽命?11ms
折射率@ 632nm1.83

光學和光譜性質

激光躍遷3F43H6
激光波長1.87~2.16μm
折射率的溫度依賴性7.3 10-6/K
吸收截面7.5×10-21cm2
二極管泵浦帶785nm,?680nm
發射截面@ 2013nm2.9×10-20?cm2
熒光壽命?11ms
折射率@ 632nm1.83

參考文獻

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[6] A, Rameix, and, et al. An efficient, diode-pumped, 2 μm Tm:YAG waveguide laser[J]. Optics Communications, 1997.
[7]? Ju Y ,? Wu C ,? Qiang W , et al. Diode-end-pumped linear-polarized single-frequency Tm:YAG laser at room temperature[J]. Optics Communications, 2012, 283(1):93-97.
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[15]? Wu C ,? Fei C ,? Ju Y , et al. High-power single-longitudinal-mode operation of Tm:YAG laser using Fabry–Perot etalons and volume Bragg grating[J]. Optics Communications, 2012, 285(10-11):2693-2696.
[16]? Xu W ,? Xu X ,? Wu F , et al. Infrared to Visible Upconversion Fluorescence in Yb,Tm :YAG Single Crystal[J]. Optics Communications, 2007, 272(1):182-185.
[17]? Wu C ,? Ju Y ,? Qiang W , et al. Injection-seeded Tm:YAG laser at room temperature[J]. Optics Communications, 2011, 284(4):994-998.
[18]? Ma Q L . Light scattering and 2-μm laser performance of Tm:YAG ceramic[J]. Optics Communications, 2011, 284(6):1645-1647.
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[20] Jianguo, Li, Tao, et al. Measurement of output characteristics of Tm:YAG laser at 25–300K[J]. Optics Communications, 2015, 334:118-121.
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[23] Output characteristics of acousto-optical cavity dumped Tm:YAG ceramic laser[J]. Optik – International Journal for Light and Electron Optics, 2016, 127(6):3175-3178.
[24]? Sidorowicza A ,? Wajlera A , Helena W?glarza, et al. Precipitation of Tm2O3 nanopowders for application in reactive sintering of Tm:YAG[J]. Ceramics International, 2014, 40(7):10269-10274.
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[27] Chunting Wu?,? Jiang Y ,? Wang C , et al. Pulse-diode-intermittent-pumped 2-μm acousto-optically Q-switched Tm:YAG laser[J]. Infrared Physics & Technology, 2019, 96:151-154.
[28]? Ferrier A ,? Ilas S ,? Goldner P , et al. Scandium doped Tm:YAG ceramics and single crystals: Coherent and high resolution spectroscopy[J]. Journal of Luminescence, 2017:S0022231317316599.
[29]? Fei B J ,? Huang J Q ,? Guo W , et al. Spectroscopic properties and laser performance of Tm:YAG ceramics[J]. Journal of Luminescence, 2013, 142(Complete):189-195.
[30] Wu, C, T, et al. Thermal effect and laser characteristics of LD end-pumped CW Tm:YAG laser at room temperature[J]. Journal for Light and Electronoptic, 2017.

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