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首页> 外文期刊>Quantum electronics >Absorption spectra and luminescence of oxygen-deficient centres in a titanosilicate glass synthesised in a steady laser plume. II. Luminescence
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Absorption spectra and luminescence of oxygen-deficient centres in a titanosilicate glass synthesised in a steady laser plume. II. Luminescence

机译:在稳定的激光羽流中合成的钛硅酸盐玻璃中氧缺乏中心的吸收光谱和发光。二。发光性

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The luminescence spectra of titanosilicate glasses, grown in a steady laser plume in an atmosphere of air or nitrogen at normal pressure, were investigated in the spectral range 260-500 nm. The luminescence was excited by the second harmonic of a cw Ar~+ laser (λ = 257 nm) and was observed for glasses synthesised in air and nitrogen atmospheres throughout the investigated range of the titanium concentrations by weight (from ~0.1% to ~6%). When the titanium concentration was less than 1%, the luminescence spectrum of glass grown in a nitrogen atmosphere had a band with a maximum at λ ~ 280 nm associated with silicon oxygen-deficient centres and a correlated new strong band with a maximum at λ ~ 380 nm. An increase in the Ti concentration from ~0.1% to ~0.4% resulted in an exponential fall (by a factor of ~4) of the intensity of the 280 nm luminescence band accompanied by a rise of approximately 30% in the intensity of the luminescence in the 380 nm band. Luminescence in the range 350-500 nm was observed in glass grown in a nitrogen atmosphere when the titanium concentration was ~1%-2%. Glass grown in air there had a wide band in the luminescence spectrum with its maximum near ~440 nm (titanium concentration ~2%) and a band attributed to the Ti~(4+) luminescence (with a maximum near ~420 nm when the titanium concentration was 3%-6%).
机译:在260-500 nm的光谱范围内研究了钛硅酸盐玻璃的发光光谱,该钛硅酸盐玻璃在稳定的激光羽流中在空气或氮气的常压下生长。连续的Ar〜+激光(λ= 257 nm)的二次谐波激发了发光,并且在研究的钛重量浓度范围(〜0.1%至〜6)中,在空气和氮气气氛中观察到了合成玻璃。 %)。当钛浓度小于1%时,在氮气氛下生长的玻璃的发光光谱具有一个在λ〜280 nm处有一个最大的带,与一个硅氧缺乏中心有关,而一个相关的新的强带在λ〜处有一个最大的相关。 380海里Ti浓度从〜0.1%增加到〜0.4%导致280 nm发光带强度呈指数下降(约为〜4倍),同时发光强度增加约30%在380 nm波段当钛浓度约为1%-2%时,在氮气氛下生长的玻璃中观察到350-500 nm的发光范围。在空气中生长的玻璃在发光光谱中有一个宽谱带,其最大波长约为440 nm(钛浓度约为2%),并且归因于Ti〜(4+)发光的谱带(最大光谱约为420 nm)。钛浓度为3%-6%)。

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