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液态硅中热力学、结构和动力学异常的嵌套

Nesting of thermodynamic, structural, and dynamic anomalies in liquid silicon.

作者信息

Vasisht Vishwas V, Mathew John, Sengupta Shiladitya, Sastry Srikanth

机构信息

Theoretical Sciences Unit, Jawaharlal Nehru Centre for Advanced Scientific Research, Jakkur Campus, Bengaluru 560 064, India.

Department of Condensed Matter Physics and Materials Science, Tata Institute of Fundamental Research, Homi Bhabha Road, Mumbai 400 005, India.

出版信息

J Chem Phys. 2014 Sep 28;141(12):124501. doi: 10.1063/1.4880559.

Abstract

Anomalous behaviour in density, diffusivity, and structural order is investigated for silicon modeled by the Stillinger-Weber potential by performing molecular dynamics simulations. As previously reported in the case of water [J. R. Errington and P. G. Debenedetti, Nature (London) 409, 318 (2001)] and silica [M. S. Shell, P. G. Debenedetti, and A. Z. Panagiotopoulos, Phys. Rev. E 66, 011202 (2002)], a cascading of thermodynamic, dynamic, and structural anomalous regions is also observed in liquid silicon. The region of structural anomaly includes the region of diffusivity anomaly, which in turn encompasses the region of density anomaly (which is unlike water but similar to silica). In the region of structural anomaly, a tight correlation between the translational and tetrahedrality order parameter is found, but the correlation is weaker when a local orientational order parameter (q3) is used as a measure of tetrahedrality. The total excess entropy and the pair correlation entropy are computed across the phase diagram and the correlation between the excess entropy and the regions of anomalies in the phase diagram of liquid silicon is examined. Scaling relations associating the excess entropy with the diffusion coefficient show considerable deviation from the quasi-universal behaviour observed in hard-sphere and Lennard-Jones liquids and some liquid metals. Excess entropy based criteria for diffusivity and structural anomalies fail to capture the observed regions of anomaly.

摘要

通过进行分子动力学模拟,研究了由Stillinger-Weber势建模的硅在密度、扩散率和结构有序性方面的异常行为。正如之前在水[J. R. Errington和P. G. Debenedetti,《自然》(伦敦)409, 318 (2001)]和二氧化硅[M. S. Shell、P. G. Debenedetti和A. Z. Panagiotopoulos,《物理评论E》66, 011202 (2002)]的情况中所报道的那样,在液态硅中也观察到了热力学、动力学和结构异常区域的级联现象。结构异常区域包括扩散率异常区域,而扩散率异常区域又包含密度异常区域(这与水不同,但与二氧化硅相似)。在结构异常区域中,发现平移序参数和四面体序参数之间存在紧密的相关性,但当使用局部取向序参数(q3)作为四面体性的度量时,这种相关性较弱。计算了整个相图上的总过剩熵和对关联熵,并研究了液态硅相图中过剩熵与异常区域之间的相关性。将过剩熵与扩散系数相关联的标度关系显示,与在硬球和Lennard-Jones液体以及一些液态金属中观察到的准普遍行为有相当大的偏差。基于过剩熵的扩散率和结构异常判据未能捕捉到观察到的异常区域。

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