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Frontiers of Physics

ISSN 2095-0462

ISSN 2095-0470(Online)

CN 11-5994/O4

Postal Subscription Code 80-965

2018 Impact Factor: 2.483

Front. Phys.    2007, Vol. 2 Issue (2) : 204-207    https://doi.org/10.1007/s11467-007-0021-8
Structure and superconductivity in the ternary silicide CaAlSi
MA Rong1, LIU Mei1, HUANG Gui-qin2
1.Department of Physics, Southeast University, Nanjing 210096, China; 2.Department of Physics, Nanjing Normal University, Nanjing 210097, China
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Abstract Using the linear response-linearized Muffin-tin orbital (LR-LMTO) method, we study the electronic band structure, phonon spectra, electron-phonon coupling and superconductivity for c-axis ferromagnetic-like (F-like) and antiferromagnetic-like (AF-like) structures in ternary silicide CaAlSi. The following conclusions are drawn from our calculations. If Al and Si atoms are assumed to arrange along the c axis in an F-like long-range ordering (-Al-Al-Al- and Si-Si-Si-), one could obtain the ultrasoft B1g phonon mode and thus very strong electron-phonon coupling in CaAlSi. However, the appearance of imaginary frequency phonon modes indicates the instability of such a structure. For Al and Si atoms arranging along the c axis in an AF-like long-range ordering (-Al-Si-Al-), the calculated electron-phonon coupling constant is equal to 0.8 and the logarithmically averaged frequency is 146.8 K. This calculated result can correctly yield the superconducting transition temperature of CaAlSi by the standard BCS theory in the moderate electron-phonon coupling strength. We propose that an AF-like superlattice model for Al (or Si) atoms along the c direction may mediate the inconsistency estimated from theory and experiment, and explain the anomalous superconductivity in CaAlSi.
Issue Date: 05 June 2007
 Cite this article:   
HUANG Gui-qin,MA Rong,LIU Mei. Structure and superconductivity in the ternary silicide CaAlSi[J]. Front. Phys. , 2007, 2(2): 204-207.
 URL:  
https://academic.hep.com.cn/fop/EN/10.1007/s11467-007-0021-8
https://academic.hep.com.cn/fop/EN/Y2007/V2/I2/204
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