연도 2015 
저널명 Physics of Plasmas 
 
Abstract

A global model was developed to investigate the densities of negative ions and the other species in
a low-pressure inductively coupled hydrogen plasma with a bi-Maxwellian electron energy
distribution. Compared to a Maxwellian plasma, bi-Maxwellian plasmas have higher populations
of low-energy electrons and highly vibrationally excited hydrogen molecules that are generated
efficiently by high-energy electrons. This leads to a higher reaction rate of the dissociative electron
attachment responsible for negative ion production. The model indicated that the bi-Maxwellian
electron energy distribution at low pressures is favorable for the creation of negative ions. In addition,
the electron temperature, electron density, and negative ion density calculated using the model
were compared with the experimental data. In the low-pressure regime, the model results of the bi-
Maxwellian electron energy distributions agreed well quantitatively with the experimental measurements,
unlike those of the assumed Maxwellian electron energy distributions that had discrepancies.

연도 저널명 제목 조회 수
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2015  Fusion Science and Technology  Laser-Assisted Ha Spectroscopy for Measurement of Negative Ion Density in A Hydrogen Plasma 935
2015  Physics of Plasmas  Global model analysis of negative ion generation in low-pressure inductively coupled hydrogen plasmas with bi-Maxwellian electron energy distributions 1006
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2015  Fusion Science and Technology  Analysis on Interface Diffusion-Induced Embrittlement Between Tungsten and Graphite with Reactive Diffusion Barrier Model 2230
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2015  Current Applied Physics  Determination of electron energy probability function in low-temperature plasmas from current - voltage characteristics of two Langmuir probes filtered by Savitzky-Golay and Blackman window methods 3788
2015  IEEE TRANSACTIONS ON Semiconductor Manufacturing  Enhancement of the Virtual Metrology Performance for Plasma-assisted Oxide Etching Processes by Using Plasma Information (PI) Parameters 4190
2015  Journal of Physics D: Applied Physics  How to determine the relative ion concentrations of multiple-ion-species plasmas generated in the multi-dipole filament source 12022
2014  Journal of Nuclear Materials  Investigation of SOL plasma interaction with graphite PFC 902

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