NMR Study of Two-Gap Superconductivity in Lu sub( 2)Fe sub( 3)Si sub( 5)

We report ...Lu and ...Si NMR results of the ternary-iron silicide superconductor, Lu...Fe...Si..., with \(T_{\text{c}}\sim 6.1\) K. We confirm the decrease of the Knight shift and the existence of coherence peak of nuclear spin-lattice relaxation rate, \(1/T_{1}\) of ...Si below \(T_{\text{c}}\), i...

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Veröffentlicht in:Journal of the Physical Society of Japan 2013-06, Vol.82 (6), p.1-1
Hauptverfasser: Saeed, Muhammad, Wazumi, Toshihiro, Kumagai, Ken-ichi, Nakajima, Yasuyuki, Tamegai, Tsuyoshi
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Sprache:eng
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Zusammenfassung:We report ...Lu and ...Si NMR results of the ternary-iron silicide superconductor, Lu...Fe...Si..., with \(T_{\text{c}}\sim 6.1\) K. We confirm the decrease of the Knight shift and the existence of coherence peak of nuclear spin-lattice relaxation rate, \(1/T_{1}\) of ...Si below \(T_{\text{c}}\), indicating apparently that the superconducting (SC) pairing symmetry is of the spin-singlet. The observed ...Lu-NMR signals are attributed to the Zeeman split ...\(|{\pm} 1/2\rangle\) transition under a large nuclear quadrupole interaction. The temperature dependence of \(1/T_{1}\) of ...Lu obeys a Curie-Weiss behavior in the normal state. In the SC state, \(1/T_{1}\) decreases rapidly, and follows the \(T_{1}T=\text{const.}\) relation below \(T=1\) K, which is suggestive of the existence of the residual density of states of the conduction electrons at the Fermi level. This indicates that the small SC gap is completely suppressed even at small field of \(H\)
ISSN:0031-9015
1347-4073