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首页> 外文期刊>The Journal of Chemical Physics >Communication: Re-entrant limits of stability of the liquid phase and the Speedy scenario in colloidal model systems
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Communication: Re-entrant limits of stability of the liquid phase and the Speedy scenario in colloidal model systems

机译:沟通:液相稳定性的重新参与稳定性和胶体模型系统的快速情景

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A re-entrant gas-liquid spinodal was proposed as a possible explanation of the apparent divergence of the compressibility and specific heat off supercooling water. Such a counter-intuitive possibility, e.g., a liquid that becomes unstable to gas-like fluctuations on cooling at positive pressure, has never been observed, neither in real substances nor in off-lattice simulations. More recently, such a reentrant scenario has been dismissed on the premise that the re-entrant spinodal would collide with the gas-liquid coexisting curve (binodal) in the pressure-temperature plane. Here we study, numerically and analytically, two previously introduced one-component patchy particle models that both show (i) a re-entrant limit of stability of the liquid phase and (ii) a re-entrant binodal, providing a neat in silico (and in charta) realization of such unconventional thermodynamic scenario. Published by AIP Publishing.
机译:提出了一种重新参赛剂气液纯催眠剂作为可压缩性和特定脱离过冷水的表观分歧的可能解释。 这种反向直观的可能性,例如,对于在正压下冷却的气体状波动变得不稳定的液体,从未被观察到,这两者都不是实际物质,也不是在晶格模拟中。 最近,这种重入情景已经被驳回,即重新参赛者旋转晶芯将与压力温度平面中的气液共存曲线(二页透镜)碰撞。 在这里,我们在数值和分析上研究了两个先前引入的单组分斑块粒子模型,其展示(i)液相稳定性的再参赛物极限和(ii)在硅中提供整洁,在硅( 并且在图表中)实现了这种非传统热力学情景。 通过AIP发布发布。

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