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BALANCE EQUATION AND THE QUASITEMPERATURE OF CHANNELED PARTICLES IN EQUILIBRIUM

机译:平衡方程和平衡态中的粒子的准温度

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摘要

Using the methods of nonequilibrium statistical thermodynamics, we obtain the equation for the transverse energy and momentum balance for fast atomic particles moving in the planar channeling regime. Based on the solution of this equation, we obtain an expression for the transverse quasitemperature in the quasiequilibrium in terms of the basic parameters of the theory. We show that the equilibrium quasitemperature of channeled particles is established because of particle diffusion in the space of transverse energies (subsystem “heating”), the dissipative process (“cooling”), and the anharmonic effects of particle oscillations between the channel walls (the redistribution of energies over the oscillatory degrees of freedom is the internal thermalization of the subsystem). According to the estimates for particles with an energy of the order of 1MeV, the quasitemperature values are in the characteristic temperature range for a low-temperature plasma.
机译:使用非平衡统计热力学方法,我们获得了快速原子粒子在平面沟道状态中运动的横向能量和动量平衡的方程。基于该方程的解,我们根据该理论的基本参数获得了准平衡中的横向准温度的表达式。我们表明,由于横向能量空间中的粒子扩散(子系统“加热”),耗散过程(“冷却”)以及通道壁之间的粒子振荡的非谐效应(通道表面),建立了通道粒子的平衡准温度。振荡自由度上能量的重新分配是子系统的内部热化。根据对能量为1MeV量级的粒子的估计,准温度值在低温等离子体的特征温度范围内。

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