Particle-in-cell Monte Carlo collision simulation and experimental measurement of Ar plasma in a fast atom beam source for surface-activated bonding

Author:

Morisaki Ryo,Yamazaki TakahiroORCID,Oka Chiemi,Sakurai Junpei,Hirai Takami,Takahashi Tomonori,Tsuji Hiroyuki,Ohno Noriyasu,Hata Seiichi

Abstract

Abstract Ar plasma in a fast atom beam (FAB) source with magnetic fields, which was previously developed [Precis. Eng. 62, 106 (2020)] to achieve high-performance surface activated bonding, was analyzed by particle-in-cell-Monte Carlo collision simulation and experimental measurements. Simulation in the proposed FAB source with magnetic fields shows that higher electron density accumulation occurs near the irradiation port by E × B drift, and the potential gradient near the irradiation port steepens, which results in an increase in Ar+ flux to the irradiation port. The variation in the plasma distribution due to the effect of the magnetic field contributes to an increase in the amount of Ar-FAB irradiation, which reduces erosion of the carbon electrodes and suppresses the formation of carbon agglomerates. These simulation results were verified experimentally with Langmuir probe measurements and FAB irradiation experiments with oxide layer removal. The analysis results explain why high performance is achieved with the proposed FAB source.

Publisher

IOP Publishing

Subject

General Physics and Astronomy,Physics and Astronomy (miscellaneous),General Engineering

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Prototype of Parallel Plate Type Fast Atom Beam Source and its Improvement of Irradiation Characteristics;International Journal of Automation Technology;2024-07-05

2. New Long Life Fast Atom Beam Source for Surface Activated Bonding;2021 7th International Workshop on Low Temperature Bonding for 3D Integration (LTB-3D);2021-10-05

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