Herteroepitaxy growth of GaAsBi on Ge (100) substrate by gas source molecular beam epitaxy

来源 :2015 Shanghai Thin Film Conference(2015上海薄膜国际会议) | 被引量 : 0次 | 上传用户:jin226330
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
  Integration of Ⅲ-Ⅴ materials on germanium(Ge)substrate,which has been investigated for decades,provides an effective mediation approach for silicon based optoelectronic devices.[1] GaAsBi,as a relative innovative material,also draw much attention because of its large capacity at band-gap engineering and interesting potential as candidates for near-infrared emitters and detectors.[2,3] In this work,we explore the possibility of herteroepitaxy growth of GaAsBi on Ge substrate.GaAsBi single crystal films are grown on Ge substrate by gas source molecular beam epitaxy.Orientation of the substrate is [100] tilted 6°to [111] and pre-growth annealing is carried out to promote the formation of bi-atom step on the surface.Ga pre-deposition process and low temperature growth of the buffer layer at the beginning of growth prevent the formation of anti-phase domain and inter-diffusion of Ge atoms.Positive mismatch of the epi-layer revealed by high-resolution x-ray diffraction indicates the sufficient incorporation of bismuth(Bi)and near infrared room temperature photoluminescence is also detected by Fourier transform infrared(FTIR)spectrometer.Raman spectrum reveals the bonding type of Bi in the lattice as shown in Fig.1.Atom force microscopy and secondary ion mass spectrometer are also utilized to investigate the thin film quality such as the surface morphology and Bi distribution in the film.
其他文献
  Germanium is one of the most promising candidates for the channel material of future CMOS devices,because of its high carrier mobility.However,a critical is
会议
氧化锌作为重要的Ⅱ-Ⅵ族半导体材料,其独特的结构和性质已经被证明在电子、光电、电化学、光催化领域有着广泛的应用。纳米材料性能很大程度上取决于其结构和尺寸。因此,合成
核桃在我国栽培历史悠久,培育经验丰富,胡桃醌是核桃属植物核桃中的重要活性物质,存在于核桃青皮、树皮和枝干中,其中以核桃青皮含量最高。胡桃醌具有抗肿瘤、抗毒和抗细菌的功效
牡丹(PaeoniasuffruticosaAndr.)是原产我国的特有名贵花卉,誉称“国色天香”、“花中之王”。春节催花是牡丹产业主要内容之一,生产中催花不良甚至催花失败的现象常有发生。理解
上世纪二十年代末,于右任先生提了出“标准草书”的概念,并组织人员,本着“易识、易写、准确、美丽”的原则对草法进行了规范。[1]其目的很简单,就是要推广普及草书,“以求制
采用Pechini型溶胶-凝胶法、传统固相法、水热法等制备了一系列稀土离子及Mn2+离子激活的几种无机发光材料,对它们的光致发光和阴极射线发光性质进行了详细研究,探讨了它们的发
配位聚合物作为一种具有巨大潜在应用价值的新型功能材料,凭借其多样的结构和独特的性质,在光催化、荧光传感、多功能材料等方面展现了广阔的应用前景。本论文从配合物功能材料
在植被构建过程中,苗木质量是决定造林后苗木成活和生长的最根本因素,它直接影响着移栽或造林的效果。而根系是苗木最为重要的功能器官,根构型的变化直接影响苗木地上部的生
紫外光固化技术是一种新型材料技术,该技术集效率高、无公害、低碳节能等诸多优点于一体,经常被使用在化工材料的表面处理工作中,因此在涂料、油墨、粘胶剂等领域发挥着重要的作
该文对脱氢芳樟醇重排合成柠檬醛进行了研究,选择聚有机硅氧钒为主催化剂,并对主催化剂的制备条件进行了考察;研究了柠檬醛合成工艺条件,包括反应温度、反应时间、溶剂类型、