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High-hole mobility polycrystalline Ge on an insulator formed by controlling precursor atomic density for solid-phase crystallization

机译:通过控制前体原子密度以进行固相结晶而形成的绝缘体上的高空穴迁移率多晶Ge

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High-carrier mobility semiconductors on insulators are essential for fabricating advanced thin-film transistors, allowing for three-dimensional integrated circuits or high-performance mobile terminals. We investigate the low-temperature (375–450?°C) solid-phase crystallization (SPC) of Ge on a glass substrate, focusing on the precursor conditions. The substrate temperature during the precursor deposition, T d, ranged from 50 to 200?°C. According to the atomic density of the precursor and the T d dependent SPC properties, the precursor conditions were determined by three regimes: the low-density regime (T d 125?°C). The use of the precursor in the narrow high-density regime enabled us to form SPC-Ge with a hole mobility of 340?cm2/Vs, the highest value among semiconductor thin films grown on insulators at low temperature (900?°C). The origins of the high hole mobility were determined to be both a large grain size (5?μm) and a low energy barrier height (6.4?meV) for the grain boundary. The findings from and knowledge gained in this study, that is, the influence of the precursor conditions on subsequent crystal growth, will be universal and applicable to various materials.
机译:绝缘体上的高载流子迁移率半导体对于制造高级薄膜晶体管至关重要,可用于三维集成电路或高性能移动终端。我们研究玻璃衬底上Ge的低温(375–450?C)固相结晶(SPC),重点关注前驱物条件。前体沉积期间的基板温度T d为50至200℃。根据前驱体的原子密度和T d依赖的SPC性质,前驱体条件由以下三种方式确定:低密度方式(T d 125°C)。在狭窄的高密度状态下使用前驱体可以使我们形成具有340?cm2 / Vs的空穴迁移率的SPC-Ge,这是在低温(<900?C)下在绝缘体上生长的半导体薄膜中最高的值。高空穴迁移率的起因是晶界较大的晶粒尺寸(5?μm)和较低的能垒高度(6.4?meV)。从这项研究中获得的发现和知识,即前驱物条件对随后晶体生长的影响,将是普遍的,并适用于各种材料。

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