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NATO Advanced Research Workshop on Metastable Systems under Pressure: Platform for New Technologies and Environmental Applications

机译:北约压力下的亚稳系统高级研究研讨会:新技术和环境应用平台

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摘要

The fundamental insight and the technological & environmental relevance of metastable systems have given a strong impetus from the last decade development of extreme pressures experimental techniques, from the GPa region to the challenging negative pressures domain. The ultimate verification of theoretical models and reliable equations for portraying basic properties for such systems seems to be possible only when including temperature and pressure paths. This volume presents a set of papers related to novel findings on the glass transition phenomenon, phase transitions in liquid crystals, critical mixtures, bioliquids, geophysical system which can reveal surprising "secret" features only when using extreme pressures. This can be illustrated by the link between colloidal and molecular glassformers, the universal onset of the non-trivial dynamics in glasses, demistification of the secondary relaxation or novel findings associated with liquid - liquid near critical transitions in critical mixture, liquid crystals and in one component liquid, including water Particularly noteworthy is the emerging possibility of applications in geophysical and environment- relevant system as well as in technological application from material engineering, pharmacy industry, to biotechnology.
机译:从GPa地区到极具挑战性的负压领域,近十年来极端压力实验技术的发展为亚稳态系统的基本见识以及技术和环境相关性提供了强大的动力。描绘这种系统基本特性的理论模型和可靠方程的最终验证似乎只有在包括温度和压力路径的情况下才有可能。该卷提供了一组与玻璃化转变现象,液晶中的相变,关键混合物,生物液体,地球物理系统的新发现有关的论文,这些论文只有在使用极端压力时才能显示出令人惊讶的“秘密”特征。这可以通过胶体和分子玻璃形成者之间的联系,玻璃中非平凡动力学的普遍发作,二次弛豫的去雾化或与关键混合物,液晶中的液-液近临界转变相关的新发现来说明。包括水在内的液体成分特别值得注意的是在地球物理和环境相关系统以及从材料工程,制药工业到生物技术的技术应用中出现的新兴可能性。

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