TY - JOUR
T1 - Stability of unconventional superconductivity on surfaces of topological insulators
AU - Ito, Yuto
AU - Yamaji, Youhei
AU - Imada, Masatoshi
PY - 2011/6
Y1 - 2011/6
N2 - Superconductivity on the surface of topological insulators is known to be anisotropic and unconventional in that the symmetry is the mixture of s-wave and nodeless p-wave component under certain conditions. In contrast to Anderson's theorem for the insensitivity of the s-wave superconducting critical temperature to the nonmagnetic (time-reversal symmetric (TRS)) impurities, anisotropic superconductors including nodeless p-wave one are in general fragile even with small concentration of the TRS impurities. By employing the Abrikosov-Gor'kov theory, we clarify that this type of unconventional superconductivity emergent on the surface state of the strong topological insulators robustly survive against TRS impurities.
AB - Superconductivity on the surface of topological insulators is known to be anisotropic and unconventional in that the symmetry is the mixture of s-wave and nodeless p-wave component under certain conditions. In contrast to Anderson's theorem for the insensitivity of the s-wave superconducting critical temperature to the nonmagnetic (time-reversal symmetric (TRS)) impurities, anisotropic superconductors including nodeless p-wave one are in general fragile even with small concentration of the TRS impurities. By employing the Abrikosov-Gor'kov theory, we clarify that this type of unconventional superconductivity emergent on the surface state of the strong topological insulators robustly survive against TRS impurities.
KW - Helical Dirac electron
KW - Impurity scattering
KW - Time reversal symmetry
KW - Topological insulator
KW - Unconventional superconductivity
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U2 - 10.1143/JPSJ.80.063704
DO - 10.1143/JPSJ.80.063704
M3 - Article
AN - SCOPUS:79958797479
SN - 0031-9015
VL - 80
JO - Journal of the Physical Society of Japan
JF - Journal of the Physical Society of Japan
IS - 6
M1 - 063704
ER -