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 a...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.展开更多
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)
文摘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.