小中性金团簇中存在玻色子峰吗

K. Vishwanathan, M. Springborg
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引用次数: 1

摘要

玻色子峰通常归因于小星团的振动态密度过大。在光谱的低频部分观察到一个分辨良好的玻色子峰。我们讨论的起点是玻色子峰的行为,该行为来源于状态的振动密度和重新优化的中性金团簇的振动热容的温度依赖性。这种玻色子峰与原子排列中存在中程序(IRO)有关。包含这条主要谱线(玻色子峰)的低频(远红外FIR, IR-C 200-10 cm−1)根据其与原子密度波动的幅度和程度的关系进行解释,因此被认为是这些原子中程顺序的量度。我们发现了玻色子峰值能量、每个原子的玻色子峰值强度与之字形键密度之间的系统关系;随着之字形键密度的减小,峰值能量减小,峰值强度增大。
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Does the Boson Peaks Exist in Small Neutral Gold Clusters
The Boson peaks are typically ascribed to an excess density of vibrational states for the small clusters. A well resolved boson peak is observed in the low-frequency portion of the spectrum. A starting point for our discussion is the behaviour of the boson peak, derived from the vibrational density of states and the temperature dependencies of the vibrational heat capacities of the re-optimized neutral gold clusters. This Boson peak is associated with the existence of intermediate range order (IRO) in the arrangements of atoms. The low frequency (Far Infrared FIR, IR-C 200-10 cm−1) containing this dominant spectral line (Boson peak) is interpreted in terms of its relationship to the amplitude and extent of the density fluctuations in atoms and is, thereby, considered a measure of the intermediate range order in these atoms. We found a systematic relation among the boson peak energy, the boson peak intensity per atom, and the zigzag-bond density; the peak energy decreases and the peak intensity increases as zigzag-bond density decreases.
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