Stokes and anti-Stokes luminescence in LiTaO3:Ho

W. Ryba-Romanowski, S. Gołąb, I. Sókolska, G. Dominiak-Dzik, P. Solarz, T. Lukasiewicz, M. Świrkowicz
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Abstract

This paper deals with the excitation and decay of excited state of holmium in LiTaO3 single crystals. Particular attention is paid to processes governing a population build up on the 5S2 and 5I7 metastable states whose quantum efficiencies are sufficiently high to be considered as initial levels for a laser transition. We observed for the first time, to our knowledge, an efficient conversion of the 647.1 nm light of a krypton ion laser into green luminescence in the material studied. Based upon analysis of excited state relaxation dynamics it is concluded that the mechanism involved is the excited state absorption from the long lived 5I7 level. Efficient single wavelength excitation is due to coincidence of transition energies of the ground state absorption and excited state absorption.
LiTaO3:Ho中的Stokes和反Stokes发光
本文研究了LiTaO3单晶中钬的激发和激发态衰变。特别注意的是控制在5S2和5I7亚稳态上建立的种群的过程,这些亚稳态的量子效率足够高,可以被认为是激光跃迁的初始水平。据我们所知,我们第一次观察到,在所研究的材料中,氪离子激光器的647.1 nm光有效地转化为绿色发光。通过对激发态弛豫动力学的分析,认为其机制是长寿命5I7能级的激发态吸收。有效的单波长激发是由于基态吸收和激发态吸收的跃迁能量的重合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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