复杂物理系统的无序和波动:2021年诺贝尔物理学奖得主乔治·帕里西

V. M. Tyutyunnik
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引用次数: 0

摘要

2021年,诺贝尔物理学奖被授予“对我们理解复杂系统的创新贡献”,其中一半被授予Shukuro Manabe和Klaus Hasselmann,“以表彰他们对地球气候的物理建模、量化变异和可靠地预测全球变暖”,另一半被授予Giorgio Parisi,“以表彰他们发现从原子尺度到行星尺度的物理系统中无序和波动的相互作用”。帕里西在无序复杂的材料中发现了隐藏的模式。他的发现是对复杂系统理论最重要的贡献之一。他证明了在自旋玻璃中永远不能达到平衡,因为挫折不允许满足所有的限制。在现实中,存在无数的实际平衡状态,在这些状态中挫折倾向于最小化。帕里西的研究兴趣涵盖14个不同的方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Disorder and fluctuations in complex physical systems: Nobel Prize winner in physics 2021 Giorgio Parisi
In 2021, the Nobel Prize in Physics was awarded “for innovative contributions to our understanding of complex systems,” with half awarded jointly to Shukuro Manabe and Klaus Hasselmann “for the physical modelling of Earth’s climate, quantifying variability and reliably predicting global warming”, and the other half to Giorgio Parisi “for the discovery of the interplay of disorder and fluctuations in physical systems from atomic to planetary scales”. Parisi discovered hidden patterns in disordered, complex materials. His discoveries are one of the most important contributions to the theory of complex systems. He proved that equilibrium is never achieved in spin glasses, because frustrations do not allow all limitations to be satisfied. In reality, there are an infinite number of practically equilibrium states in which frustrations tend to a minimum. Parisi’s research interests cover 14 different directions.
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