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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Memory effect on energy losses of charged particles moving parallel to solid surface
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Memory effect on energy losses of charged particles moving parallel to solid surface

机译:对平行于固体表面移动的带电粒子能量损失的记忆效应

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Theoretical derivations were made for the induced potential and the stopping power of a charged particle moving close and parallel to the surface of a solid. It was illustrated that the induced potential produced by the interaction of particle and solid depended not only on the velocity but also on the previous velocity of the particle before its last inelastic interaction. Another words, the particle kept a memory on its previous velocity, υ_0, in determining the stopping power for the particle of velocity υ. Based on the dielectric response theory, formulas were derived for the induced potential and the stopping power with memory effect. An extended Drude dielectric function with spatial dispersion was used in the application of these formulas for a proton moving parallel to Si surface. It was found that the induced potential with memory effect lay between induced potentials without memory effect for constant velocities υ_0 and υ. The memory effect was manifest as the proton changes its velocity in the previous inelastic interaction. This memory effect also reduced the stopping power of the proton. The formulas derived in the present work can be applied to any solid surface and charged particle moving with arbitrary parallel trajectory either inside or outside the solid.
机译:对带电粒子接近并平行于固体表面移动的感应电势和停止功率进行了理论推导。结果表明,粒子与固体相互作用产生的感应电势不仅取决于速度,还取决于粒子在最后一次非弹性相互作用之前的先前速度。换句话说,在确定速度υ的粒子的停止功率时,粒子会保留其先前速度υ_0的记忆。基于介电响应理论,推导了具有记忆效应的感应电势和停止功率的公式。在这些公式的应用中,对于平行于Si表面移动的质子,使用了具有空间色散的扩展Drude介电函数。发现对于恒定速度υ_0和υ,具有记忆效应的感应电势介于没有记忆效应的感应电势之间。当质子在先前的非弹性相互作用中改变其速度时,记忆效应就显现出来了。这种记忆效应还降低了质子的阻止能力。在本工作中得出的公式可以应用于固体内部或外部以任意平行轨迹运动的任何固体表面和带电粒子。

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