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First principles study on the structural, electronic and optical properties of diluted magnetic semiconductors Zn1-xCoxX (X=S, Se, Te) 被引量:2

First principles study on the structural, electronic and optical properties of diluted magnetic semiconductors Zn1-xCoxX (X=S, Se, Te)
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摘要 The electronic and optical properties of zincblende ZnX(X=S, Se, Te) and ZnX:Co are studied from density functional theory (DFT) based first principles calculations. The local crystal structure changes around the Co atoms in the lattice are studied after Co atoms are doped. It is shown that the Co-doped materials have smaller lattice constant (about 0.6%-0.9%). This is mainly due to the shortened Co-X bond length. The (partial) density of states (DOS) is calculated and differences between the pure and doped materials are studied. Results show that for the Co-doped materials, the valence bands are moving upward due to the existence of Co 3d electron states while the conductance bands are moving downward due to the reduced lattice constants. This results in the narrowed band gap of the doped materials. The complex dielectric indices and the absorption coefficients are calculated to examine the influences of the Co atoms on the optical properties. Results show that for the Co-doped materials, the absorption peaks in the high wavelength region are not as sharp and distinct as the undoped materials, and the absorption ranges are extended to even higher wavelength region. The electronic and optical properties of zincblende ZnX(X=S, Se, Te) and ZnX:Co are studied from density functional theory (DFT) based first principles calculations. The local crystal structure changes around the Co atoms in the lattice are studied after Co atoms are doped. It is shown that the Co-doped materials have smaller lattice constant (about 0.6%-0.9%). This is mainly due to the shortened Co-X bond length. The (partial) density of states (DOS) is calculated and differences between the pure and doped materials are studied. Results show that for the Co-doped materials, the valence bands are moving upward due to the existence of Co 3d electron states while the conductance bands are moving downward due to the reduced lattice constants. This results in the narrowed band gap of the doped materials. The complex dielectric indices and the absorption coefficients are calculated to examine the influences of the Co atoms on the optical properties. Results show that for the Co-doped materials, the absorption peaks in the high wavelength region are not as sharp and distinct as the undoped materials, and the absorption ranges are extended to even higher wavelength region.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2006年第7期1585-1590,共6页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China (Grant No 10564002) and the 0pen Foundations of Key Laboratory for 0pto-electronics of Jiangxi Province, China (Grant Nos 2004003 and 2004008), the Natural Science Foundation of Jiangxi Province, China (Grant No 0512017) and the Youth Science Program of Jiangxi Normal University, China(Grant No 1075).
关键词 first principles diluted magnetic semiconductors optical properties electronic properties first principles, diluted magnetic semiconductors, optical properties, electronic properties
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  • 1Ves S, Strossner K and Gebhardt W 1986 Phys. Rev.33 4077
  • 2Dreyhsig J and Litzenburger B 1996 Phys. Rev. B 5410516
  • 3Ferrer-Roca C, Segura A and Munoz V 2000 Phys. Stat.Sol. (a) 180 561
  • 4Zar á nd G and Jank ó B 2002 Phys. Rev. Lett. 89047201
  • 5Alvarez G, Mayr M and Dagotto E 2002 Phys. Rev. Lett.89 277202
  • 6Yang S R Eric, Sinova J, Jungwirth T, Shim Y P and Mac Donald A H 2003 Phys. Rev. B 67 045205
  • 7Maca F and Masek J 2002 Phys. Rev. B 65 235209
  • 8Ouyang C Y and Lei M S 2002 Chin. J. Semicond. 231233
  • 9Guo X G, Chen X S, Sun Y L, Zhou X H, Sun L Z and Lu W 2004 Acta Phys. Sin. 53 3545 (in Chinese)
  • 10Kuang A L, Liu X Y, Lu Z L, Ren S K, Liu C Y, Zhang F M and Du Y W 2005 Acta Phys. Sin. 54 2934 (in Chinese)

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