Issue 27, 2015

Quantum-trajectory Monte Carlo method for study of electron–crystal interaction in STEM

Abstract

In this paper, a novel quantum-trajectory Monte Carlo simulation method is developed to study electron beam interaction with a crystalline solid for application to electron microscopy and spectroscopy. The method combines the Bohmian quantum trajectory method, which treats electron elastic scattering and diffraction in a crystal, with a Monte Carlo sampling of electron inelastic scattering events along quantum trajectory paths. We study in this work the electron scattering and secondary electron generation process in crystals for a focused incident electron beam, leading to understanding of the imaging mechanism behind the atomic resolution secondary electron image that has been recently achieved in experiment with a scanning transmission electron microscope. According to this method, the Bohmian quantum trajectories have been calculated at first through a wave function obtained via a numerical solution of the time-dependent Schrödinger equation with a multislice method. The impact parameter-dependent inner-shell excitation cross section then enables the Monte Carlo sampling of ionization events produced by incident electron trajectories travelling along atom columns for excitation of high energy knock-on secondary electrons. Following cascade production, transportation and emission processes of true secondary electrons of very low energies are traced by a conventional Monte Carlo simulation method to present image signals. Comparison of the simulated image for a Si(110) crystal with the experimental image indicates that the dominant mechanism of atomic resolution of secondary electron image is the inner-shell ionization events generated by a high-energy electron beam.

Graphical abstract: Quantum-trajectory Monte Carlo method for study of electron–crystal interaction in STEM

Article information

Article type
Paper
Submitted
20 Apr 2015
Accepted
02 Jun 2015
First published
02 Jun 2015

Phys. Chem. Chem. Phys., 2015,17, 17628-17637

Author version available

Quantum-trajectory Monte Carlo method for study of electron–crystal interaction in STEM

Z. Ruan, R. G. Zeng, Y. Ming, M. Zhang, B. Da, S. F. Mao and Z. J. Ding, Phys. Chem. Chem. Phys., 2015, 17, 17628 DOI: 10.1039/C5CP02300A

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