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Dependence of equilibrium properties of channeled particles on the transverse quasitemperature

机译:通道颗粒平衡特性对横向准温度的依赖性

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We use methods of nonequilibrium thermodynamics to investigate the quasiequilibrium and kinetic characteristics of channeled particles regarded as a separate thermodynamic subsystem. For the channeled particles, we derive the energy-momentum balance equation in the moving coordinate system and show that the solution of the balance equation provides an expression for the main thermodynamic parameter, the transverse quasitemperature of the channeled-particle subsystem. We study the quasiequilibrium angular distribution of particles after their passage through a. thin single crystal, the quasiequilibrium distribution over the particle exit angles under backscattering conditions, and also the rate constant for the nonequilibrium (dechanneling) process at large deviations of the system as a whole from the thermo-dynamic equilibrium. We discuss a. measurement method for the particle beam transverse temperature over the peak height of the angular particle distribution found in the framework of a "shoot-through", experiment.
机译:我们使用非平衡热力学方法研究被视为独立热力学子系统的通道颗粒的拟平衡和动力学特性。对于通道粒子,我们在运动坐标系中导出了能量动量平衡方程,并表明该平衡方程的解提供了主要热力学参数表达式,即通道粒子子系统的横向准温度。我们研究了粒子通过a后的准平衡角分布。薄单晶,在背向散射条件下,在整个粒子出射角上的准平衡分布,以及在整个系统与热力学平衡相差较大的情况下,非平衡(脱沟道)过程的速率常数。我们讨论一个。测量方法是针对粒子束横向温度超过峰值高度的角度分布在“穿通”框架内进行实验的分布。

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