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Active polar two-fluid macroscopic dynamics

机译:主动极性两流体宏观动力学

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We study the dynamics of systems with a polar dynamic preferred direction. Examples include the pattern-forming growth of bacteria as well as shoals of fish, flocks of birds and migrating insects. Due to the fact that the preferred direction only exists dynamically, but not statically, the macroscopic variable of choice is the macroscopic velocity associated with the motion of the active units, which are typically biological in nature. We derive the macroscopic equations for such a system and discuss novel static, reversible and irreversible cross-couplings connected to a second velocity as a variable. We analyze in detail how the macroscopic behavior of an active system with a polar dynamic preferred direction compares to other systems with two velocities including immiscible liquids and electrically neutral quantum liquids such as superfluid 4He and 3He.We critically discuss changes in the normal mode spectrum when comparing uncharged superfluids, immiscible liquids and active system with a polar dynamic preferred direction. We investigate the influence of a macroscopic hand (collective effects of chirality) on the macroscopic behavior of such active media.
机译:我们研究具有极性动态首选方向的系统的动力学。例子包括细菌的形态形成生长以及鱼群,鸟群和迁徙昆虫。由于优选方向仅动态地存在,而不是静态地存在,因此选择的宏观变量是与主动单元的运动相关联的宏观速度,主动单元的运动通常是自然的。我们推导了此类系统的宏观方程,并讨论了与第二速度作为变量连接的新型静态,可逆和不可逆交叉耦合。我们详细分析了具有极性动态首选方向的主动系统与具有两种速度的其他系统(包括不混溶液体和电中性量子液体,例如超流体4He和3He)相比,其宏观行为如何。比较带极性动态首选方向的不带电超流体,不混溶液体和活性系统。我们研究了这种活性介质的宏观行为对宏观手的影响(手性的集体效应)。

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