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机构地区:[1]Key Laboratory of Eco-materials Advanced Technology (Fuzhou University), Fujian Province University [2]College of Materials Science and Engineering, Fuzhou University [3]Key Laboratory of Optoelectronic Materials Chemistry and Physics, Chinese Academy of Sciences
出 处:《Chinese Journal of Structural Chemistry》2017年第4期631-639,共9页结构化学(英文)
基 金:supported by the National Natural Science Foundation of China(No.61308085,51102047,51472050 and 11404072);Fund of Key Laboratory of Optoelectronic Materials Chemistry and Physics,Chinese Academy of Sciences(2008DP173016);the Natural Science Foundation of Fujian Province(2017J01746)
摘 要:This paper reports the growth and spectral assessments of Yb^(3+) ion doped MgMoO_4(Yb^(3+):MgMoO_4) crystal grown by the TSSG method. Polarized spectral properties of Yb^(3+):MgMoO_4 crystal, including absorption and emission cross-sections, absorption FWHM and fluorescence lifetime, have been investigated. The laser performance parameters bmin, Isat and Iminhave also been evaluated. All the investigated results show the Yb^(3+)-doped MgMoO_4 crystal is expected as a promising candidate for ultrashort pulse and tunable lasers.This paper reports the growth and spectral assessments of Yb^(3+) ion doped MgMoO_4(Yb^(3+):MgMoO_4) crystal grown by the TSSG method. Polarized spectral properties of Yb^(3+):MgMoO_4 crystal, including absorption and emission cross-sections, absorption FWHM and fluorescence lifetime, have been investigated. The laser performance parameters bmin, Isat and Iminhave also been evaluated. All the investigated results show the Yb^(3+)-doped MgMoO_4 crystal is expected as a promising candidate for ultrashort pulse and tunable lasers.
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