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Characteristics of the fast electron emission produced during the cleavage of crystals

机译:晶体分裂过程中产生的快速电子发射的特征

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The present paper reports the fast electron emission produced during the cleavage of alkali halide crystals and models the dynamics of the process. The mechano-emission arises as a result of the ionization of surface traps at the expense of the energy which is released in the annihilation of the defects which are formed during cleavage. The slow electrons which appear upon the ionization of surface traps are subsequently accelerated in the ???eld of negatively charged segment of the freshly cleaved surface. Considering the basic mechanism of fast electron emission, expressions are derived which are able to explain satisfactorily the temporal, thermal, charge, surface, coloration, water adsorption and other characteristics of the fast electron emission produced during the cleavage of crystals. The decay time of the charges on the newly created surfaces, and the velocity of cracks can be determined from the measurements of fast electron emission produced during the cleavage of crystals. It is shown that two types of diffusing centres are responsible for the charge relaxation and thereby for the emission of fast electrons produced during the cleavage of alkali halide crystals.
机译:本文报道了在碱金属卤化物晶体裂解过程中产生的快速电子发射,并模拟了该过程的动力学。由于表面陷阱的电离而产生了机械发射,而能量的消耗则是由于在切割过程中形成的缺陷的an灭而释放出来的。随后在新裂解的表面带负电的段的电场中,加速了表面陷阱电离时出现的慢电子。考虑到快速电子发射的基本机理,得出了可以令人满意地解释在晶体分裂过程中产生的快速电子发射的时间,热,电荷,表面,着色,吸水和其他特性的表达式。新产生的表面上电荷的衰变时间以及裂纹的速度可以从晶体分裂过程中产生的快速电子发射的测量结果中确定。结果表明,两种类型的扩散中心负责电荷的弛豫,从而负责在碱金属卤化物晶体裂解过程中产生的快速电子的发射。

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