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高类金属含量Ni基非晶态合金的电阻温度特性
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作者 彭平 刘让苏 谢泉 《材料研究学报》 EI CAS CSCD 1995年第5期395-398,共4页
Ni72-xSi15B13+x(x=0,2,4,6,8)非晶合金电阻温度特性曲线表明它们在高于室温时电阻随温度呈线性变化,其室温电阻串ρ0和电阻率温度系数Cf与合金总传导电子浓度Ce有关.采用Nagel推广的液态金属... Ni72-xSi15B13+x(x=0,2,4,6,8)非晶合金电阻温度特性曲线表明它们在高于室温时电阻随温度呈线性变化,其室温电阻串ρ0和电阻率温度系数Cf与合金总传导电子浓度Ce有关.采用Nagel推广的液态金属Ziman理论对此作出了较好的解释.当与其它Ni基非晶合金的实验结果比较时,发现可以根据TM—M非晶合金总传导电子浓度Ce。 展开更多
关键词 电阻率 传导电子浓度 非晶态合金 温度特性
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A Puzzle of Quantum Phase Transition on Gd-IMC by Tuning of Conduction Electron Concentration
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作者 Negin Kamali Sarvestani Ahmad Yazdani S. Ahmad Ketabi 《Journal of Chemistry and Chemical Engineering》 2014年第1期92-96,共5页
Based on the critical unstable of both crystal and magnetic structure of Gd-intermetallic compound near the competition of two strongly independent subsystem ("local 4f7" and "conduction electron concentration")... Based on the critical unstable of both crystal and magnetic structure of Gd-intermetallic compound near the competition of two strongly independent subsystem ("local 4f7" and "conduction electron concentration"), a new QPT (quantum point transition) is predicted by calculation of: (1) The band structure and density of state by density functional theory where a strong narrowing fluidity of fermions around EF with shifted to negative value "-0.8 eV "is observable in the Gd-intermetalliccompound system while in the Y-case, it is not dominated. An antiferromagnetic state on the fluidity of conduction band can be investigated; (2) The internal magnetic field due to short range exchange interaction Jij between the nearest neighbor of local magnetic moment of stable s-state of Gd (L = 0) through the mean field approximation and of Eigenvalue-Eigenfunction ~.(k) are calculated. While a strong negative value of Jy is predicted, the eigenvalue L(k) of the system shows a strong antiferromagnetic phase in the reciprocal lattice direction 〈010〉, 〈001〉 in the correlation length 3.38 ~A. Although the antiferromagnetic state at Rc 〈_ 3.38 °A is a puzzle but it is completely dominated at Rc = 9 °A after passing through the competition between ).λmin(O) and λmin(π) in the ranger of 3.2 °A 〈 Rc 〈 9 °A. Since both of the antiferromagnetic subsystems are sensitive to the predicted KF, the effect of decreasing of conduction electron is proposed to investigate, the change of the antiferromagnetic ordering state to the competition of ferromagnetic state (in direction 〈010〉) and antiferromagnetic state (in direction 〈001 〉 and 〈 100〉) resulted to paramagnetic state in the long range Rc = 9 °A. 展开更多
关键词 Density functional theory ab initio calculations magnetic structure quantum phase transition.
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