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首页> 外文期刊>The European physical journal, B. Condensed matter physics >A sub-atomic microscope, superfocusing in channeling and close encounter atomic and nuclear reactions
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A sub-atomic microscope, superfocusing in channeling and close encounter atomic and nuclear reactions

机译:亚原子显微镜,超聚焦于引导和紧密接触原子和核反应

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摘要

A highly collimated beam of protons (approximate to1 MeV) entering the channel of a monocrystal film forms at a certain depth an extremely sharp (<0.005 nm) and relatively long (some monolayers of the crystal) focusing area where the increase of the flux density can reach thousand times. Impinging atoms in this focusing area can undergo nuclear or atomic reactions with proper foreign dopants which disappear if the crystal is tilted from this position by only 10(-3) radians. This effect can be called channeling superfocusing in contrast to the ordinary fluxpeaking where the increase of flux density reaches only few times. Results are predicted by quantum mechanical model calculations and confirmed by channeling Monte Carlo simulations accounting for several properties of the real lattice.
机译:进入单晶膜通道的高度准直的质子束(约1 MeV)在一定深度处形成极其锐利(<0.005 nm)和相对较长(某些晶体单层)的聚焦区域,在该区域内通量密度增加可以达到千次。撞击在此聚焦区域的原子可能会与适当的外来掺杂剂发生核反应或原子反应,如果晶体从该位置倾斜仅10(-3)弧度,则这些掺杂剂会消失。与通量密度增加仅达到几次的普通通量峰形成对比,这种效果可以称为引导超聚焦。结果是通过量子力学模型计算预测的,并通过考虑真实晶格的多个属性的蒙特卡洛模拟通道得到了证实。

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