首页 | 本学科首页   官方微博 | 高级检索  
     检索      

电子回旋共振等离子体特性及其对生长氮化镓晶膜的影响
引用本文:杜小龙,陈广超,江德仪,姚鑫兹,朱鹤孙.电子回旋共振等离子体特性及其对生长氮化镓晶膜的影响[J].物理学报,1999,48(2):257-266.
作者姓名:杜小龙  陈广超  江德仪  姚鑫兹  朱鹤孙
作者单位:(1)北京理工大学,北京 100081; (2)中国科学院物理研究所,北京 100080; (3)中国科学院物理研究所,北京 100080;北京理工大学,北京 100081
摘    要:为了解并优化在电子回旋共振等离子体辅助化学汽相沉积GaN晶膜的工艺研究中的等离子体特性,利用朗缪尔探针及法拉第筒系统地测量了离子密度(Ni)、等离子体势(Vp)、电子温度(Te)及离子流强(Ji)等多个等离子体参量随微波功率(Pw)及沉膜室气压(p)变化的关系.给出了在Pw=850W,p=0.22Pa时,上述等离子体参量的轴向及径向分布.GaN晶膜的生长速率、电学及晶体学性能 关键词

关 键 词:等离子体特性  ECR  薄膜生长  氮化镓  晶膜
收稿时间:1998-08-13

PROPERTIES OF ELECTRON CYCLOTRON RESONANCE PLASMAS AND THEIR INFLUENCE ON THE DEPOSITION OF GaN FILMS
DU XIAO-LONG,CHEN GUANG-CHAO,JIANG DE-YI,YAO XIN-ZI and ZHU HE-SUN.PROPERTIES OF ELECTRON CYCLOTRON RESONANCE PLASMAS AND THEIR INFLUENCE ON THE DEPOSITION OF GaN FILMS[J].Acta Physica Sinica,1999,48(2):257-266.
Authors:DU XIAO-LONG  CHEN GUANG-CHAO  JIANG DE-YI  YAO XIN-ZI and ZHU HE-SUN
Abstract:Langmuir probes and Faraday cups have been used to characterize electron cyclotron resonance plasmas which have been used in the depositions of GaN films on the substrate of (0001)α-Al2O3.These plasmas were generated with microwave power(Pw) from 300W to 1100W at pressures(p) range from 0.8Pa to 0.05Pa using N2 as the plasma source.The relationship between the plasma parameter,such as ion density(Ni),electron temperature(Te),plasma potential(Vp) and ion current density(Ji),and system parameters,such as pW and p,is given.And the axial and radial distributions of Te,Ni,Vp and Ji are presented.The growth rate and the quality of the GaN film strongly depend on the growth condition.The higher the plasma density,the higher the N/Ga ratio of GaN film.When the microwave power was 850W and gas pressure was 0.22Pa,the plasma near the substrate was characterized by a Te near 1.4eV and plasma density near 2.0×1011 cm-3,and the growth rate of GaN was as high as 0.9μm/h.The full width at half maximum of double-crystal X-ray diffraction rocking curve is 16 arcmin.
Keywords:
本文献已被 CNKI 维普 万方数据 等数据库收录!
点击此处可从《物理学报》浏览原始摘要信息
点击此处可从《物理学报》下载免费的PDF全文
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号