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Understanding non-equilibrium: a challenge for the future

机译:了解非平衡:对未来的挑战

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Far from equilibrium behavior is ubiquitous. Indeed most of the processes that characterize energy flow occur far from equilibrium. These range from very large systems, such as weather patterns or ocean currents that remain far from equilibrium owing to an influx of energy, to biological structures. Away-from-equilibrium processes occur on time scales ranging from nanoseconds to millennia. A difficulty of non-equilibrium physics is that usual thermodynamic functions of state like entropy or free energy do not generalize easily. The study of rare fluctuations of thermodynamic variables like densities or currents in stationary states has led to the identification of thermodynamic functions relevant in far from equilibrium situations. For a wide class of systems, called diffusive systems, it has been possible to develop a comprehensive unified theory, known as Macroscopic Fluctuation Theory, with considerable predictive power. Much remains to be done. Besides the purely scientific motivation, the challenge is to deal effectively with basic issues facing humanity like energy problems, climate control, understanding living matter.
机译:远离平衡行为无处不在。实际上,表征能量流的大多数过程都远未达到平衡。这些范围从非常大的系统到生物结构,例如天气模式或由于涌入能量而无法保持平衡的洋流等。偏离平衡过程的发生时间范围从纳秒到几千年。非平衡物理学的一个难点是,状态的通常热力学函数(如熵或自由能)难以轻易推广。对热力学变量如稳态下的密度或电流的罕见波动的研究,导致了与远非平衡状态相关的热力学函数的识别。对于称为扩散系统的广泛类别的系统,有可能开发出具有相当大的预测能力的,称为宏观波动理论的综合统一理论。还有很多工作要做。除了纯粹的科学动机外,挑战还在于有效应对人类面临的基本问题,例如能源问题,气候控制,了解生物。

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