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The reversible UV-laser-light-induced spectral change and origin of the 2.4eV luminescence band in SrTO3

机译:SrTO3中可逆的紫外激光诱导的光谱变化和2.4eV发光带的起源

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In order to clarify the origin of the 2.4 eV luminescence band in SrTiO3, as-grown and annealed SrTiO3 single crystals are irradiated with a continuous-wave ultraviolet laser light (lambda = 325 nm) in different atmospheres at room temperature. Under the laser light irradiation in a vacuum, the 2.4 eV luminescence band grows with increasing irradiation time, while it returns to the original weak-luminescence state under the same laser light irradiation in oxygen gas. The excitation-intensity, temperature and time dependences of the photoluminescence spectra are also measured for the crystals. All the results indicate that the 2.4 eV luminescence band arises not from intrinsic self-trapped excitons but from extrinsic excitons trapped around oxygen defects. Near-band-edge emissions have been observed, for the first time, at 3.2 and 2.9 eV under intense excitation. (c) 2004 Elsevier B.V. All rights reserved.
机译:为了阐明SrTiO3中2.4 eV发光带的起源,在室温下,在不同的气氛中,用连续波紫外激光(λ= 325 nm)辐照生长和退火的SrTiO3单晶。在真空中的激光照射下,随着照射时间的增加,2.4 eV的发光带增大,在氧气中相同的激光照射下,其返回到原始的弱发光状态。还测量了晶体的光致发光光谱的激发强度,温度和时间依赖性。所有结果表明2.4 eV发光带不是由内在的自陷激子引起的,而是由氧缺陷周围的外在激子引起的。在强激发下,首次观察到近带边缘发射分别为3.2和2.9 eV。 (c)2004 Elsevier B.V.保留所有权利。

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