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Coupling of the instability of emission intensity distributions in thin flat-type back lights

机译:薄型扁平背光源发射强度分布不稳定性的耦合

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摘要

We present spatial distributions of the emission spectra in 360 nm < lambda < 850 nm and the infrared light in 2 mu m < lambda < 5 mu m from the mixture of Ar, Xe and Hg atoms in thin flat-type back lights (1.74 x 12.4 x 1.6 mm(3)). The spatial distributions of emission intensity from the constituents reflect the density distributions of each constituent. The intensity distribution of visible lights from mercury atoms was different from those from argon and xenon atoms. The spatial distribution of mercury atoms showed a 3 x 2 mode but, in the case of argon and xenon case, their intensity distributions showed a 3 x (1/2) mode, in which the maximum of the intensity located near the anode. The maximum of infrared intensity located near the anode and its distribution was very similar to that of xenon atoms. The time correlation of infrared intensity strongly depended on the location in the cell. Especially, the intensity of the low frequency components below the fundamental mode of the power source became maximum near the anode. These spectroscopic features suggest the different movement of each element and the source of the infrared light near the anode is related to the excited molecules like xenon excimers. (C) 2000 Elsevier Science B.V. All rights reserved. References: 5
机译:我们展示了 360 nm < λ < 850 nm 的发射光谱的空间分布,以及 2 μ m < λ < 5 μm 的红外光的空间分布,这些光来自薄扁平型背光 (1.74 x 12.4 x 1.6 mm(3))。成分发射强度的空间分布反映了每种成分的密度分布。汞原子可见光的强度分布与氩原子和氙原子的可见光强度分布不同。汞原子的空间分布显示为3×2模式,但在氩气和氙气的情况下,它们的强度分布显示为3×(1/2)模式,其中最大强度位于阳极附近。位于阳极附近的最大红外强度及其分布与氙原子的红外强度非常相似。红外强度的时间相关性很大程度上取决于细胞中的位置。特别是,低于电源基模的低频分量的强度在阳极附近变得最大。这些光谱特征表明每种元素的运动不同,阳极附近的红外光源与氙准分子等激发分子有关。(C) 2000 Elsevier Science B.V.保留所有权利。[参考资料: 5]

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