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Erbium spectroscopy and 1.5-Μm emission in KGd(WO4)2: Er,Yb single crystals

机译:KGd(WO4)2:Er,Yb单晶中的b光谱和1.5-μm发射

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We grew good-optical-quality KGd(WO4)2 single crystals doped with erbium and ytterbium ions at several concentrations of dopants using the top-seeded-solution growth slow-cooling method (TSSG). We performed the spectroscopic characterization of this material related to the 1.5-mm infrared emission of erbium which is interesting for laser applications. To do this, we carried out polarized optical absorption at room temperature (RT) and at low temperature (6 K) and performed luminescence studies of the emission and lifetime. We obtained the 1.5-mm emission of erbium after selective laser pump excitation of the ytterbium ion and energy transfer between the two ions. The maximum emission cross section for 1.5 mm was about 2.56×10-20 cm2 for the polarization of light with the electric field parallel to the Nm principal optical direction. This value was higher than for other erbium-doped materials with application in solid-state lasers such as LiYF4:Er(YLF:Er), Y3Al5O12:Er(YAG:Er), YAlO3:Er, and Al2O3:Er.
机译:我们使用顶部种子溶液生长缓慢冷却法(TSSG),以几种掺杂剂浓度生长了掺有and和离子的高光学质量KGd(WO4)2单晶。我们对这种材料的光谱特性进行了表征,该材料与the的1.5毫米红外辐射有关,这对于激光应用来说很有趣。为此,我们在室温(RT)和低温(6 K)下进行了偏振光吸收,并对发射和寿命进行了发光研究。在对laser离子进行选择性激光泵浦激发并在两个离子之间进行能量转移后,我们获得了1.5mm的emission发射。对于1.5mm的最大发射横截面,对于电场平行于Nm主光学方向的光的偏振,约为2.56×10-20cm2。该值高于在固态激光器中应用的其他掺b材料,例如LiYF4:Er(YLF:Er),Y3Al5O12:Er(YAG:Er),YAlO3:Er和Al2O3:Er。

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