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首页> 外文期刊>Оптика и спектроскопия >OPTICAL PROPERTIES OF CRYSTALS DOPED WITH SM~(3+) OR DY~(3+) RELEVANT TO POTENTIAL INGAN/GAN LASER DIODE-PUMPED VISIBLE LASER OPERATION: A COMPARATIVE STUDY
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OPTICAL PROPERTIES OF CRYSTALS DOPED WITH SM~(3+) OR DY~(3+) RELEVANT TO POTENTIAL INGAN/GAN LASER DIODE-PUMPED VISIBLE LASER OPERATION: A COMPARATIVE STUDY

机译:与潜在的Ingan / GAN激光二极管泵浦可见激光操作相关的掺有SM〜(3+)或DY〜(3+)的晶体的光学性质:对比研究

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Results of detailed spectroscopic investigation of Sm~(3+) and Dy~(3+) ions incorporated in crystal structures of YAl_3(BO_3)_4, LiNbO_3, Gd_3Ga_5O_(12), Gd_2SiO_5, Lu_2SiO_5, and (Gd, Lu)_2SiO_5 are reported and discussed. The impact of the hosts on transition intensities and excited state relaxation dynamics of incorporated luminescent ions was examined. Distribution of luminescence intensity among spectral bands in terms of luminescence branching ratios was evaluated based on numerical integration of luminescence bands. Intensities of UV and blue absorption bands potentially useful for optical pumping were determined quantitatively in units of absorption cross section. The most intense luminescence bands related to potential laser transitions ~4G_(5/2) → ~6H_(7/2) of Sm_(3+) around 600 nm and ~4F_(9/2) → ~6H_(13/2) of Dy~(3+) around 580 nm were calibrated in units of emission cross section. Evaluated peak values of emission cross section range from 0.43 × 10~(-20) cm~2 for Sm~(3+) in (Gd, Lu)_2SiO_5 to 1.17 × 10~(-20) cm~2 for Sm~(3+) in LiNbO_3. Those for dysprosium-doped crystals range from 0.63 × 10~(-20) cm~2 for LiNbO_3:Dy~(3+) to 2.0 × 10~(-20) cm~2 for YAl_3(BO_3)_4:Dy~(3+). It follows from these considerations that samarium-doped crystals show promise for laser application owing to the combination of a strong absorption that matches radiation of commercial laser diodes emitting near 405 nm and long luminescence lifetime. Major shortcoming of dysprosium-doped crystals results from a weak intensity of absorption bands available for optical pumping near 450 and 385 nm combined with relatively strong self-quenching of luminescence.
机译:YAl_3(BO_3)_4,LiNbO_3,Gd_3Ga_5O_(12),Gd_2SiO_5,Lu_2SiO_5和(Gd,Lu)_2SiO_5的晶体结构中掺入的Sm〜(3+)和Dy〜(3+)离子的详细光谱研究结果为报告和讨论。研究了主体对掺入的发光离子的跃迁强度和激发态弛豫动力学的影响。基于发光带的数值积分,评价了发光带中的发光强度在发光分支率方面的分布。以吸收截面为单位定量确定对光泵浦有用的紫外线和蓝色吸收带的强度。最强的发光带与600 nm附近的Sm_(3+)的潜在激光跃迁〜4G_(5/2)→〜6H_(7/2)和〜4F_(9/2)→〜6H_(13/2)相关以发射横截面为单位校准Dy〜(3+)在580 nm附近的峰。在(Gd,Lu)_2SiO_5中,Sm〜(3+)的发射截面估计峰值范围从0.43×10〜(-20)cm〜2到Sm〜(1.17×10〜(-20)cm〜2 3+)在LiNbO_3中。掺s晶体的LiNbO_3:Dy〜(3+)的范围为0.63×10〜(-20)cm〜2,YAl_3(BO_3)_4:Dy〜(的范围为2.0×10〜(-20)cm〜2 3+)。从这些考虑可以得出结论,掺the晶体具有很强的吸收性,可与在405 nm附近发射的商用激光二极管的辐射相匹配,并具有长的发光寿命,因此有望用于激光应用。掺dy晶体的主要缺点是由于在450 nm和385 nm附近的光泵浦中可用的吸收带强度较弱,加上相对较强的发光自猝灭。

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