反射高能电子衍射
电子衍射
材料科学
薄膜
反射(计算机编程)
原子层沉积
衍射
沉积(地质)
单斜晶系
光学
分析化学(期刊)
化学
纳米技术
物理
结晶学
计算机科学
地质学
晶体结构
古生物学
色谱法
程序设计语言
沉积物
作者
Alexandra J. Howzen,Justin Caspar,Alparslan Öztekin,Nicholas C. Strandwitz
摘要
We report the design, fabrication, and testing of an atomic layer deposition (ALD) system that is capable of reflection high energy electron diffraction (RHEED) in a single chamber. The details and specifications of the system are described and include capabilities of RHEED at varied accelerating voltages, sample rotation (azimuthal) control, sample height control, sample heating up to set temperatures of 1050 °C, and either single- or dual-differential pumping designs. Thermal and flow simulations were used to justify selected system dimensions as well as carrier gas/precursor mass flow rates. Temperature calibration was conducted to determine actual sample temperatures that are necessary for meaningful analysis of thermally induced transitions in ALD thin films. Several demonstrations of RHEED in the system are described. Calibration of the camera length was conducted using a gold thin film by analyzing RHEED images. Finally, RHEED conducted at a series of increasing temperatures was used to monitor the crystallization of an ALD HfO2 thin film. The crystallization temperature and the ring pattern were consistent with the monoclinic structure as determined by separate x-ray diffraction-based measurements.
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