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First-order liquid-liquid phase transition in compressed hydrogen and critical point

机译:压缩氢和临界点中的一阶液液相过渡

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One of the fundamental problems relating to the properties of hydrogen is that of insulator-metal transition. Recent theoretical and experimental studies show that the metallization in liquid hydrogen could be a first-order phase transition and involve molecular to atomic transition. However, the location of the critical point is still an unresolved question. Earlier studies reported the critical point at a temperature of 1500-2000 K, but recent experimental observations on diamond-anvil cells show that the discontinuous transition still persists at temperatures well above 2000 K. We have carried out a detailed study on the liquid-liquid phase transition in dense hydrogen by uisng ab initio molecular dynamics simulations and found new evidence for the abrupt metallization between weakly dissociated and strongly dissociated fluid phases at temperatures as high as 3000 and 4000 K. Also, the predicted phase boundary is in excellent agreement with the recent experiments. Our results suggest that this first-order transition in liquid hydrogen likely ends in a critical point around 4000 K, which is significantly higher than the previous theoretical predictions. Published under license by AlP Publishing.
机译:与氢的性质有关的基本问题是绝缘体 - 金属转变的基本问题。最近的理论和实验研究表明,液态氢气中的金属化可以是一阶相转变,并涉及分子以原子转变。但是,临界点的位置仍然是一个未解决的问题。早期的研究报告报告的临界点在1500-2000 k的温度下,但最近关于金刚石 - 砧座细胞的实验观察结果表明,不连续的过渡仍然在2000k高于2000k的温度下仍然存在。我们对液体进行了详细的研究通过UISNG AB Initio分子动力学模拟致致密氢相过渡,并发现了在高达3000和4000K的温度下弱分离和强均分离的流体相之间突然金属化的新证据。此外,预测的相位边界与良好的协议最近的实验。我们的研究结果表明,这种在液态氢中的一阶转变可能在临时点左右的临界点,这显着高于先前的理论预测。通过ALP发布在许可下发布。

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