首页> 外文会议>7th Mtg in Israel on Optical Engineering >Unusually fast energy transfer in solid state crystals and glasses
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Unusually fast energy transfer in solid state crystals and glasses

机译:固态晶体和玻璃中异常快速的能量转移

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Abstract: The laser performance of rare earth doped crystals and glasses can be significantly improved by codoping with an additional ion which absorbs the pump light and efficiently transfers the energy to the lasing rare earth ion. Such methods have been used in chromium-neodymium doped gadolinium scandium gallium garnets, glasses and glass ceramics, and manganese- thulium doped lead zinc gallium fluoride glasses. Energy transfer between donors and acceptors in such materials has been traditionally modeled by the Foerster-Dexter equation. However, it has been found recently that an anomalous energy transfer can occur at very short times inconsistent with the above model. We propose that such transfer can occur due to two additional causes: 1. the physical pairing of donors and acceptors in the materials and 2. additional short-range interactions which noticeably increase the transfer rate between donors and acceptors. Models for both these cases are presented and compared with experimental results. !
机译:摘要:通过与一种附加离子共掺杂可以显着改善稀土掺杂的晶体和玻璃的激光性能,该离子吸收泵浦光并有效地将能量转移到激光稀土离子上。此类方法已用于铬-钕掺杂的scan镓镓石榴石,玻璃和玻璃陶瓷,以及锰-ped掺杂的铅锌氟化镓玻璃。传统上已经通过Foerster-Dexter方程对这种材料中供体和受体之间的能量转移进行了建模。然而,最近发现与上述模型不一致的是,在非常短的时间内会发生异常的能量转移。我们建议这种转移可能是由于两个其他原因引起的:1.材料中供体和受体的物理配对,以及2.额外的短程相互作用,显着提高了供体和受体之间的转移速率。提出了这两种情况的模型,并与实验结果进行了比较。 !

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