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掺杂对一维反铁磁海森堡自旋链性质的影响 被引量:8
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作者 王春花 陈东芳 刘拥军 《扬州大学学报(自然科学版)》 CAS CSCD 2005年第1期28-31,38,共5页
应用三子格的自旋波理论和格林函数方法研究了由掺杂形成的准一维自旋1/2的反铁磁海森堡系统,得到系统存在3支自旋波激发谱,其中1支没有能隙,2支有能隙;在长波近似下,这3支自旋波激发谱与波矢k成平方关系,系统的低温比热为C∝T1/2关系,... 应用三子格的自旋波理论和格林函数方法研究了由掺杂形成的准一维自旋1/2的反铁磁海森堡系统,得到系统存在3支自旋波激发谱,其中1支没有能隙,2支有能隙;在长波近似下,这3支自旋波激发谱与波矢k成平方关系,系统的低温比热为C∝T1/2关系,其基态具有磁性长程序,这都不同于未掺杂的一维自旋1/2的反铁磁海森堡链模型系统.对系统磁性序的研究表明,T=0是相变点,Mermin-Wagner定理对于该系统成立. 展开更多
关键词 准一维反铁磁海森堡系统 自旋波激发谱 低温比热 Mermin-wagner定理 周期掺杂
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Electronic Absorption Spectroscopy of H2X (X=O, Te, Po): Theoretical Treatment of Spin-Orbit Effects
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作者 Chérif A. A. Ndoye Chantal Daniel 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2009年第2期171-177,共7页
The electronic spectroscopy of H2X (X=O, Te, Po) was investigated by means of spinorbit configuration interaction (EPCISO) and restricted active space state interaction (SORASSI). The transition energies to the ... The electronic spectroscopy of H2X (X=O, Te, Po) was investigated by means of spinorbit configuration interaction (EPCISO) and restricted active space state interaction (SORASSI). The transition energies to the low-lying singlet and triplet states of H2O, in which the SO interaction is zero, compare rather well with the experimental data as well as to other theoretical values. The theoretical electronic absorption spectrum is characterized by three allowed transitions A^1B1 (2px(O)→σ^*g/3s(O)), B^1A1(σg→σ^*g/3s(O)) and A^1S2(σg→σ^*u) calculated at 7.68, 9.94, and 11.72 eV, respectively. The theoretical absorption spectra of H2X (X=Te, Po) are shifted to the red with the A^1B1 (npx(X)→σ^*g) states calculated at 5.06 eV (H2Te) and 4.40 eV (H2Po) and the A^1B2 (σg→σ^*u) states calculated at 7.89 eV (H2Te) and 7.77 eV (H2Po). The largest SO splitting amounts to 0.34 eV and is found for the lowest a^3A1 of H2Po. In H2Te the SO effects are still negligible with a maximum splitting of 0.04 eV for the lowest a^3B2. The two methods lead to comparable results but the EPCISO approach depends strongly on the reference wavefunction. 展开更多
关键词 SPIN-ORBIT Excited state Group dihydride
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