Suppr超能文献

在与金刚石化学气相沉积相关条件下运行的微波激活氢等离子体的空间分辨光发射与建模研究。

Spatially Resolved Optical Emission and Modeling Studies of Microwave-Activated Hydrogen Plasmas Operating under Conditions Relevant for Diamond Chemical Vapor Deposition.

作者信息

Mahoney Edward J D, Truscott Benjamin S, Mushtaq Sohail, Ashfold Michael N R, Mankelevich Yuri A

机构信息

School of Chemistry , University of Bristol , Bristol BS8 1TS , United Kingdom.

Centre for Doctoral Training in Diamond Science and Technology , University of Warwick , Gibbet Hill Road , Coventry CV4 7AL , United Kingdom.

出版信息

J Phys Chem A. 2018 Oct 25;122(42):8286-8300. doi: 10.1021/acs.jpca.8b07491. Epub 2018 Oct 10.

Abstract

A microwave (MW) activated hydrogen plasma operating under conditions relevant to contemporary diamond chemical vapor deposition reactors has been investigated using a combination of experiment and self-consistent 2-D modeling. The experimental study returns spatially and wavelength resolved optical emission spectra of the d → a (Fulcher), G → B, and e → a emissions of molecular hydrogen and of the Balmer-α emission of atomic hydrogen as functions of pressure, applied MW power, and substrate diameter. The modeling contains specific blocks devoted to calculating (i) the MW electromagnetic fields (using Maxwell's equations) self-consistently with (ii) the plasma chemistry and electron kinetics, (iii) heat and species transfer, and (iv) gas-surface interactions. Comparing the experimental and model outputs allows characterization of the dominant plasma (and plasma emission) generation mechanisms, identifies important coupling reactions between hydrogen atoms and molecules (e.g., the quenching of H( n > 2) atoms and electronically excited H molecules (H*) by the alternate ground-state species and H ion formation by the associative ionization reaction of H( n = 2) atoms with H), and illustrates how spatially resolved H* (and H) emission measurements offer a detailed and sensitive probe of the hyperthermal component of the electron energy distribution function.

摘要

利用实验和自洽二维建模相结合的方法,对在与当代金刚石化学气相沉积反应器相关的条件下运行的微波(MW)激活氢等离子体进行了研究。实验研究给出了分子氢的d→a(富勒)、G→B和e→a发射以及原子氢的巴尔末-α发射的空间分辨和波长分辨光发射光谱,这些光谱是压力、施加的微波功率和衬底直径的函数。该建模包含专门用于计算的特定模块:(i)与(ii)等离子体化学和电子动力学自洽的微波电磁场(使用麦克斯韦方程),(iii)热和物种传输,以及(iv)气体-表面相互作用。比较实验和模型输出结果可以表征主要的等离子体(和等离子体发射)产生机制,识别氢原子和分子之间的重要耦合反应(例如,通过交替基态物种淬灭H(n>2)原子和电子激发的H分子(H*),以及通过H(n=2)原子与H的缔合电离反应形成H离子),并说明空间分辨的H*(和H)发射测量如何提供对电子能量分布函数的超热成分的详细且灵敏的探测。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验