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电子涡旋光束的动态散射——一种布洛赫波分析。

Dynamic scattering of electron vortex beams--a Bloch wave analysis.

作者信息

Mendis B G

机构信息

Department of Physics, Durham University Durham DH1 3LE UK.

出版信息

Ultramicroscopy. 2015 Feb;149:74-85. doi: 10.1016/j.ultramic.2014.11.001. Epub 2014 Nov 10.

Abstract

Two important applications of electron vortex beams are in electron magnetic chiral dichroism (EMCD) measurements and nanoparticle manipulation. In both cases orbital angular momentum (〈Lz〉) transfer between the vortex beam and the specimen due to dynamic scattering is critical. In general the 〈Lz〉 pendellösung consists of short and long wavelength oscillations. The former is due to interference between the tightly bound 1s and more dispersive non-1s Bloch states, while the latter is due to interference between the non-1s states. For EMCD experiments with ±ħ angular momentum beams, momentum transfer can be minimised by selecting the appropriate aperture size, so that the probe wavefunction approximately matches that of the 2p-type Bloch states. For manipulating nanoparticles with large angular momentum beams small apertures are required to excite the 1s state and thereby enhance the short wavelength oscillations in 〈Lz〉. This enables efficient momentum transfer to the specimen, provided the nanoparticle dimension corresponds to a minimum in the 〈Lz〉 pendellösung.

摘要

电子涡旋光束的两个重要应用在于电子磁手性二色性(EMCD)测量和纳米粒子操控。在这两种情况下,由于动态散射导致的涡旋光束与样品之间的轨道角动量(〈Lz〉)转移至关重要。一般来说,〈Lz〉拍尔代洛申由短波和长波振荡组成。前者是由于紧密束缚的1s态与色散性更强的非1s布洛赫态之间的干涉,而后者是由于非1s态之间的干涉。对于使用±ħ角动量光束的EMCD实验,通过选择合适的孔径大小可以使动量转移最小化,这样探测波函数就大致与2p型布洛赫态的波函数相匹配。对于用大角动量光束操控纳米粒子,需要小孔径来激发1s态,从而增强〈Lz〉中的短波振荡。只要纳米粒子尺寸对应于〈Lz〉拍尔代洛申中的最小值,这就能实现向样品的有效动量转移。

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