稀磁半导体

  • 网络diluted magnetic semiconductor;dms;dilute magnetic semiconductors DMS;gamn
稀磁半导体稀磁半导体
  1. 稀释磁性半导体(简称稀磁半导体),是指半导体中的阳离子被过渡金属离子部分无序取代而形成的一种崭新的半导体材料。

    Diluted magnetic semiconductor ( DMS ), in which non-magnetic cations are randomly substituted by transition metal ions , is a novel kind of semiconductor .

  2. 氧化物铁磁性半导体的电子结构和磁性研究掺杂ZnO稀磁半导体磁性的第一性原理计算

    Electronic Structure and Magnetism of Oxide-based Ferromagnetic Semiconductors ; First Principle Study on Magnetism of Doped ZnO Based Diluted Magnetic Semiconductors

  3. Si基稀磁半导体的X射线吸收谱学研究

    Study of Si Based Diluted Magnetic Semiconductors by X-ray Absorption Fine Structure

  4. Fe掺杂ZnO稀磁半导体的结构与磁性

    Structure and Magnetic Properties of Fe-Doped ZnO Dilute Magnetic Semiconductors

  5. ZnO基稀磁半导体薄膜材料研究进展

    Recent Progress in Developing ZnO-based Thin Films of Diluted Magnetic Semiconductors

  6. ZnO基稀磁半导体磁性机理研究进展稀磁半导体和稀土永磁材料的第一性原理计算

    Recent Progress in the Magnetism Theory of ZnO-based Diluted Magnetic Semiconductors

  7. Co掺杂的ZnO稀磁半导体块体的退火热处理研究

    High temperature annealing treatment on Co doped ZnO bulks

  8. ZnO基稀磁半导体的结构、磁学和输运性质研究

    Structural , Magnetic and Transport Properties in ZnO Based Diluted Magnetic Semiconductors

  9. ZnO基稀磁半导体第一性原理计算与蒙特卡洛模拟研究

    The First-principles Calculation and Monte Carlo Simulation of ZnO-based Diluted Magnetic Semiconductors

  10. Fe、Ni共掺In2O3基稀磁半导体制备工艺及室温铁磁性研究

    Preparations and Room Temperature Ferromagnetism of Fe and Ni Co-Doped In_2O_3 Dilute Magnetic Semiconductor

  11. Mn掺杂的ZnO基稀磁半导体材料由于具有独特的特性而受到人们广泛的关注。

    Mn-doped ZnO diluted magnetic semiconductor has attracted widely attention for its novel properties .

  12. 水热法合成ZnO基稀磁半导体材料

    Hydrothermal Synthesis of the ZnO Based DMS

  13. 过渡金属掺杂ZnO形成稀磁半导体的研究进展

    Study on DMSs-ZnO Doped Transition - Metal

  14. 稀磁半导体Cd(1-x)FexTe的磁光光谱

    Magneto-optical properties in diluted magnetic semiconductor cd_ ( 1-x ) fexte

  15. V,Cr掺杂AlP稀磁半导体的电子能态密度和磁性研究

    A Study on Density of States and Magnetism of V-and Cr-Doped AlP Ferromagnetic Semiconductors

  16. Cu对Fe:In2O3稀磁半导体结构和磁性能的影响

    Effect of Cu on the Microstructure and Magnetic Property of Fe : In_2O_3 Diluted Magnetic Semiconductor

  17. 稀磁半导体薄膜Ti(0.93)Co(0.07)O2显微结构的研究

    Studies on the microstructures of diluted magnetic semiconductor Ti_ ( 0.93 ) Co_ ( 0.07 ) O_2 film

  18. 稀磁半导体Zn(1-x)NixO的室温铁磁性

    Room temperature ferromagnetism in Zn_ ( 1-x ) Ni_xO diluted magnetic semiconductor

  19. 新型稀磁半导体Cd(1-x)MnxIn2Te4的光学和磁学性能

    Optical and Magnetic Properties of Advanced Diluted Magnetic Semiconductor Cd_ ( 1-x ) Mn_xIn_2Te_4

  20. Zn(1-x)CoxO稀磁半导体的XAFS研究

    XAFS study on Zn_ ( 1-x ) Co_xO diluted magnetic semiconductor

  21. Co,Cu掺杂ZnO稀磁半导体粉末的结构及磁性研究

    Study of the Structure and Magnetic Properties of ( Co , Cu ) - doped ZnO Diluted Magnetic Semiconductor Powders

  22. 本文利用第一性原理计算并结合MonteCarlo模拟研究ZnO基稀磁半导体的磁特性。

    In this thesis , ZnO-based diluted magnetic semiconductors are studied by first-principles calculation and Monte Carlo simulation .

  23. 基于ECR-PEMOCVD生长的稀磁半导体(Ga,Mn)N的特性

    Characteristics of dilute magnetic semiconductor ( Ga , Mn ) N grown by ECR-PEMOCVD

  24. 这说明单独的Mn掺杂ZnO难以形成具有室温铁磁性的稀磁半导体材料。

    It shows that Mn single doped ZnO is difficult to form a diluted magnetic semiconductor with room temperature ferromagnetic .

  25. 在实验上,用传统的固相烧结法制备了Ni单掺杂、Li和Ni共掺杂以及Mn和Li共掺杂的ZnO基稀磁半导体材料。

    The Ni single doped , Li and Ni co-doped and Mn and Ni co-doped ZnO based diluted magnetic semiconductors were prepared .

  26. 高组分稀磁半导体Cd(1-x)MnxTe/CdTe超晶格的荧光谱研究

    Study on Photoluminescence Spectra of Cd_ ( 1-x ) Mn_xTe / CdTe Diluted Semiconductor Superlattices with High Mn Compositions

  27. 稀磁半导体Zn(1-x)MnxSe外延膜的反射和光致发光谱

    Reflectivity and photoluminescence spectra in diluted magnetic semiconductor zn_ ( 1-x ) mn_xse epilayer

  28. Fe掺杂ZnO稀磁半导体室温铁磁性研究缺铁量对LiZn铁氧体电磁性能的影响

    Study of Room Temperature Ferromagnetism in Fe-doped ZnO Diluted Magnetic Semiconductors Influence of Iron Deficiency on the Electromagnetic Properties of Li-Zn Ferrites

  29. 稀磁半导体Zn(1-x)MnxTe吸收光谱压力红移的理论研究

    Theoretical Study on High Pressure Red Shift of DMS Zn_ ( 1-x ) Mn_xTe Absorption Spectra

  30. 因此,在实现广泛应用的过程中遇到的最大难题是如何有效的从本质上提高稀磁半导体的铁磁居里温度(Tc)。

    Thus , the most difficult challenge of DMS as practical device is how to substantially increase the ferromagnetic Curie temperature .