首页> 外文期刊>Optics and Spectroscopy >Spectroscopic Study of Double Sodium-Yttrium Fluoride Crystals Doped with Erbium Na_(0.4)Y_(0.6)F_(2.2):Er~(3+): I. Intensities of Luminescence Spectra and Kinetics of Luminescence
【24h】

Spectroscopic Study of Double Sodium-Yttrium Fluoride Crystals Doped with Erbium Na_(0.4)Y_(0.6)F_(2.2):Er~(3+): I. Intensities of Luminescence Spectra and Kinetics of Luminescence

机译:Na_(0.4)Y_(0.6)F_(2.2):Er〜(3+)掺杂的氟化钠-钇双晶体的光谱学研究:I.发光强度和发光动力学

获取原文
获取原文并翻译 | 示例
           

摘要

Na_(0.4)Y_(0.6)F_(2.2):Er~(3+) (NYF:Er) crystals with an erbium concentration as high as 100 at. % (Na_(0.4)Er_(0.6)F_(2.2)) were grown by the Bridgman-Stockbarger method. The optical spectra were investigated at low (6 K) and room temperatures. It is shown that the absorption spectrum of NYF:Er crystals contains wide bands (790-801 and 965-980 nm) corresponding to the emission range of laser diodes. The peak absorption cross section σ_(a) for the band peaked at λ=970.4 nm is 0.15×10~(-20) cm~(2). On the basis of the analysis of the absorption and luminescence spectra at low (6 and 12 K) temperatures, the structure of the Stark splitting of erbium levels was determined as a structure of quasi-centers for which Stark components are inhomogeneously broadened. The oscillator strengths of the transitions from the ground state of erbium to excited multiplets were calculated from the absorption spectra measured at T=300 K, and the intensity parameters Ω_(t) were determined by the Judd-Ofelt method: Ω_(2)=1.65×10~(-20) cm~(2), Ω_(4)=0.56×10~(-20) cm~(2), and Ω_(6)=1.01×10~(-20) cm~(2). These values of the intensity parameters were used to calculate the probabilities of radiative transitions and the branching ratios. The rates of multiphonon nonradiative transitions in NYF:Er were estimated. The luminescence decay kinetics for radiative levels of erbium ions upon their selective excitation by nanosecond laser pulses was studied. The intracenter lifetimes of radiative levels of erbium ions were determined from the luminescence kinetics upon selective ion excitation by low-intensity light in a sample with a low erbium concentration (0.5%). It is demonstrated that, with an increase in temperature from 6 to 300 K, luminescence from the ~(4)G_(11/2), ~(2)G(H)_(9/2), and ~(4)F_(9/2) levels is quenched as a result of multiphonon nonradiative transitions. Luminescence from the ~(4)I_(9/2) level is quenched only insignificantly with increasing temperature, and no quenching of luminescence from the ~(4)I_(11/2) and ~(4)I_(13/2) levels is observed. The spectra of steady-state luminescence of NYF:Er(0.5-15%) crystals were investigated upon broadband excitation by UV and UV-visible lamp light and selective time-resolved laser excitation. It is shown that low-lying levels of erbium ions separated by an energy gap smaller than 2500 cm~(-1) are populated via cascade mechanisms. On the basis of the results obtained, it is concluded that NYF:Er~(3+) crystals are promising candidates for active media of tunable diode-pumped lasers.
机译:Na_(0.4)Y_(0.6)F_(2.2):Er〜(3+)(NYF:Er)晶体的concentration浓度高达100 at。通过Bridgman-Stockbarger方法生长%(Na_(0.4)Er_(0.6)F_(2.2))。在低温(6 K)和室温下研究了光谱。结果表明,NYF:Er晶体的吸收光谱包含对应于激光二极管发射范围的宽带(790-801和965-980 nm)。在λ= 970.4nm处峰化的带的峰吸收截面σ_(a)为0.15×10〜(-20)cm〜(2)。根据在低温(6和12 K)下的吸收光谱和发光光谱的分析,the水平的Stark分裂结构被确定为准中心结构,Stark组分不均匀地扩展。根据在T = 300 K下测得的吸收光谱计算出从the基态到激发多态跃迁的振荡器强度,并通过Judd-Ofelt方法确定强度参数Ω_(t):Ω_(2)= 1.65×10〜(-20)cm〜(2),Ω_(4)= 0.56×10〜(-20)cm〜(2),Ω_(6)= 1.01×10〜(-20)cm〜( 2)。强度参数的这些值用于计算辐射跃迁和分支比的概率。估计了NYF:Er中多声子非辐射跃迁的速率。研究了nano离子在纳秒级激光脉冲的选择性激发下的辐射衰变动力学。 selective离子辐射能级的中心内寿命是由浓度低(0.5%)的样品通过低强度光进行选择性离子激发后的发光动力学确定的。结果表明,随着温度从6 K升高到300 K,〜(4)G_(11/2),〜(2)G(H)_(9/2)和〜(4)发光由于多声子非辐射跃迁,F_(9/2)能级被淬灭。 〜(4)I_(9/2)水平的发光仅随温度升高而微不足道地淬灭,而〜(4)I_(11/2)和〜(4)I_(13/2)的发光没有淬灭水平被观察到。在紫外光和紫外可见光的宽带激发下以及选择性时间分辨激光激发下,研究了NYF:Er(0.5-15%)晶体的稳态发光光谱。结果表明,低能级的by离子被级联机制填充,能级差小于2500 cm〜(-1)。根据获得的结果,可以得出结论,NYF:Er〜(3+)晶体是可调谐二极管泵浦激光器有源介质的有前途的候选者。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号