Acta Photonica Sinica, Volume. 39, Issue 12, 2183(2010)

Spectral Fine Structure, Local Structure and Jahn-Teller Effect of α-Al2O3 Crystal Doped with Ni2+

YIN Chun-hao*, JIAO Yang, SHEN Gan, LI Fu-qiang, and ZHU Shan-shan
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    The completely diagonalized Hamiltonian matrixes of order 45 of 3d2/3d8 ion configurations in the trigonal symmetry sites were established by means of crystal field theory and irreducible representation method. The Hamiltonian matrixes include four kinds of microscopic magnetic interactions: spin-orbit interaction, spin-spin interaction, spin-other-orbit interaction and other-orbit-other-orbit interaction. The spectral fine structure and crystal local structure of Ni2+∶α-Al2O3 crystal were calculated by the Hamiltonian matrixes. Meanwhile, the four kinds of interactions and their effects to the spectral fine structure and the Jahn-Teller effect were also analyzed. The calculated values were conformed with the experimental values. The results show that doping Ni2+ ions cannot change the symmetry, and it was discovered and explained the existence mechanism of Jahn-Teller effect in spectral fine structure of α-Al2O3 doped with Ni2+.

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    YIN Chun-hao, JIAO Yang, SHEN Gan, LI Fu-qiang, ZHU Shan-shan. Spectral Fine Structure, Local Structure and Jahn-Teller Effect of α-Al2O3 Crystal Doped with Ni2+[J]. Acta Photonica Sinica, 2010, 39(12): 2183

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    Paper Information

    Received: Sep. 9, 2010

    Accepted: --

    Published Online: Jan. 26, 2011

    The Author Email: Chun-hao YIN (chunhaoyin@sohu.com)

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