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半导体物理的英文

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"半导体物理"怎么读用"半导体物理"造句

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  • semiconductor physics
  • technological fundamentals of semiconductor device

例句与用法

  • Application of fermionic integrals to semiconductor physics
    费米积分在半导体物理中的应用
  • Familiar with theory of semiconductor physics
    熟悉半导体物理理论。
  • Application of the second kind euler integrals to semiconductor physics
    第二类欧拉积分在半导体物理中的应用
  • Bs , major in semiconductor physics / applied science / engineering
    本科以上学历,主修半导体物理,应用科学,机电工程
  • Research interests : surface science ; semi - conductor physics , scanning tunneling microscopy , surface atomic and molecular dynamics ; mechanism of epitaxial growth
    研究兴趣:表面科学、半导体物理、扫描穿隧显微术、表面原子、分子动态学、磊晶成长机制。
  • The transfer of the carrier in photoconductor is anisotropy owing to the column structure of the film is anisotropy . on the basis of the new concept suggested in this paper , the maximum diffusion length in the lateral direction of the photo - carrier in the photoconductor ( which is related to the resolution of lclv directly ) as function of conductivities of both in lateral and normal directions in the film can be obtained as the expression as following . the nc - si / a - si : h photoconductor of lclv deposited and crystallized at low temperature of exactly 250 c stack column structure by al inducing a - si : h
    本文根据柱状结构存在各向异性的特点,并根据半导体物理知识,推出光导层光生载流子横向最大扩散长度(该扩散长度与液晶光阀光导层分辨率直接相关)与薄膜横向和纵向电导率关系的表达式为:由于a - si : h在al金属的诱导作用下在不高于250的温度下即开始晶化,本文对用金属al诱导非晶硅晶化制备的nc - si a - si : h薄膜进行研究。
  • The major research interest covers a broad range of topics concerned with the fundamental properties of shallow - levels in semiconductors and with impurity related issues of importance to semiconductor physics and technology , e . g . , single and multiple donors and acceptors , shallow excited states of deep - level impurities , defect interaction on the atomic scale such as impurity - pair or complex formation
    主要研究方向涵括半导体物理与技术方面有关杂质之重要领域,例如施者与受者杂质、浅与深杂质、杂质能阶、杂质光谱、杂质与杂质或缺陷相互间之交互作用,以及复合杂质之形成与特性等。
  • Among the kinds of method to fabricate the semiconductor quantum dots , self - organized processes is the one of most efficiency methods and attracted significant interest . the studies of growth and physical property of self - organized quantum dots has become one of hot topic in reduced dimensionality physical system
    在众多的制备半导体量子点材料方法中,自组织方法生长量子点有许多特殊的优点,因而自组织inas gaas量子点的生长和物性表征成为目前低维半导体物理材料和器件研究领域一个热点课题。
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