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Collision Operator for Relativistic Electrons in a Cold Gas of Atomic Particles

机译:原子粒子冷气体中相对论电子的碰撞算子

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The collision operator of relativistic electrons with a cold gas of atomic particles is derived consistently taking into account elastic interactions, excitation of electron shells, and ionization. The creation of secondary electrons is described accurately. In the range of energies exceeding the binding energy of atomic electrons, the operator implicates only the angular scattering by nuclei and the ionization integral that automatically allows for scattering by atomic electrons. The collision operator used earlier for studying the kinetics of avalanches of relativistic runaway electrons is analyzed. A more exact operator derived in the present study is simpler in form and saves time in computer calculations.
机译:相对论电子与原子粒子的冷气体的碰撞算子是在考虑弹性相互作用,电子壳的激发和电离的情况下一致得出的。准确描述了二次电子的产生。在超出原子电子束缚能的能量范围内,操作员仅涉及原子核的角散射和自动允许原子电子散射的电离积分。分析了较早用于研究相对论失控电子雪崩动力学的碰撞算子。本研究中得出的更精确的运算符形式更简单,并且节省了计算机计算的时间。

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