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Electrochemical purification of heavy metal fluoride glasses for laser-induced fluorescent cooling applications

机译:电化学纯化重金属氟化物玻璃,用于激光诱导的荧光冷却应用

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摘要

An electrochemical purification stage has been incorporated into the conventional fabrication process of heavy metal fluoride glasses. This change was undertaken to reduce the absorption losses associated with residual transition metal impurities, particularly the Fe2+ band at 1.0 mu m Purified samples doped with ytterbium exhibited net cooling due to anti-stokes fluorescence and a relative cooling efficiency of about 2% was observed via photothermal deflection spectroscopy. Pumping to the lower Stark levels of the F-2(5/2) manifold, followed by population redistribution across this manifold and fluorescence to the ground state, results in net cooling. This cooling can be achieved only if energy transfer and the extrinsic absorptive component of the host glass are suppressed.
机译:电化学纯化阶段已经被纳入重金属氟化物玻璃的常规制造过程中。进行此更改是为了减少与残留过渡金属杂质(特别是1.0μm处的Fe2 +带)相关的吸收损失,掺杂anti的纯化样品由于抗焦炭荧光而显示出净冷却,并且观察到相对冷却效率约为2%。光热偏转光谱。抽至F-2(5/2)歧管的较低Stark水平,然后通过该歧管进行种群重新分布,并荧光至基态,从而导致净冷却。只有抑制了能量传递和主体玻璃的外在吸收成分,才能实现这种冷却。

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