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Dynamics of Two-Sign Point Vortices in Positive and Negative Temperature States

机译:正负温度状态下双信号点涡旋的动力学

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Dynamics of two-sign point vortices in two-dimensional circular boundary is examined by numerical simulations with MDGRAPE-2. The vortex system is characterized by the inverse temperature β as determined from the density of states of the microcanonical ensemble of numerically generated 10~7 states. The massive simulation shows that different configurations appear in the time-asymptotic state depending on the sign of β. Condensation of the same-sign vortices is observed when β < 0, while the both-sign vortices tend to be uniformly neutralized when β > 0. During the condensation, a part of the vortices gains energy to form clumps (patches), and the other part of the vortices loses energy to keep the total energy constant and mixes with vortices of the other sign. This observation demonstrates a characteristic feature of negative β states that the system energy concentrates into the clumps of the same-sign vortices.
机译:通过使用MDGRAPE-2进行数值模拟,研究了二维圆边界中两个符号点涡旋的动力学。涡旋系统的特征在于反温度β,该反温度由数值生成的10〜7个状态的微规范集合的状态密度确定。大量模拟表明,根据β的符号,不同的配置会在时间渐近状态下出现。当β<0时,观察到相同符号的涡旋的冷凝,而当β> 0时,两个符号的涡旋趋于均匀地中和。涡旋的其他部分失去能量以保持总能量恒定,并与其他符号的涡旋混合。该观察结果证明了负β状态的特征,即系统能量集中在相同符号漩涡的团块中。

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