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Increase in Axial Compressibility in a Spinning Van der Waals Gas
Authors:Yun Liu  Hao Liu  Zhen-Guo Fu  Weimin Zhou
Affiliation:1.Department of Applied Physics, School of Physics and Electronics, Hunan University, Changsha 410082, China;2.Dengjiaxian Innovation Research Center, Institute of Applied Physics and Computational Mathematics, Beijing 100088, China;3.Science and Technology on Plasma Physics Laboratory, Laser Fusion Research Center, China Academy of Engineering Physics, Mianyang 621900, China;
Abstract:We investigated the adiabatic compression along the axial direction of a spinning Van der Waals gas by applying theoretical analysis and molecular dynamics (MD) simulations. Based on the analytical results, the rotation-induced compressibility increase effect is significant in a Van der Waals gas, while the attraction term in the Van der Waals equation of states (EOS) contributes significantly to the compressibility increase in a spinning system. We conducted MD simulations to the axial compression of a spinning gas, whose state is far from the ideal gas state, and further demonstrated that the rotation-induced compressibility increase effect in a dense state is robust, implying that such a phenomenon can be detected in experiments under high-energy-density conditions.
Keywords:axial compressibility   equation of states   Van der Waals gas   molecular dynamics
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