In exotic superconductors, including high-T-c copper oxides, the interactions mediating electron Cooper pairing are widely considered to have a magnetic rather than a conventional electron-phonon origin. Interest in this exotic pairing was initiated by the 1979 discovery of heavy-fermion superconductivity in CeCu2Si2, which exhibits strong antiferromagnetic fluctuations. A hallmark of unconventional pairing by anisotropic repulsive interactions is that the superconducting energy gap changes sign as a function of the electron momentum, often leading to nodes where the gap goes to zero. We report low-temperature specific heat, thermal conductivity, and magnetic penetration depth measurements in CeCu2Si2, demonstrating the absence of gap nodes...
A key aspect of unconventional pairing by the antiferromagnetic spin-fluctuation mechanism is that t...
Identifying the gap structure of superconductors is vital for understanding the underlying pairing m...
Identifying the gap structure of superconductors is vital for understanding the underlying pairing m...
International audienceIn exotic superconductors, including high-T$_c$ copper oxides, the interaction...
International audienceIn exotic superconductors, including high-T$_c$ copper oxides, the interaction...
International audienceIn exotic superconductors, including high-T$_c$ copper oxides, the interaction...
International audienceIn exotic superconductors, including high-T$_c$ copper oxides, the interaction...
International audienceIn exotic superconductors, including high-T$_c$ copper oxides, the interaction...
International audienceIn exotic superconductors, including high-T$_c$ copper oxides, the interaction...
International audienceIn exotic superconductors, including high-T$_c$ copper oxides, the interaction...
International audienceIn exotic superconductors, including high-T$_c$ copper oxides, the interaction...
International audienceIn exotic superconductors, including high-T$_c$ copper oxides, the interaction...
International audienceIn exotic superconductors, including high-T$_c$ copper oxides, the interaction...
38年を経て明らかになった非従来型超伝導の「先駆け」物質の電子状態. 京都大学プレスリリース. 2017-06-26.In exotic superconductors, including high...
A key aspect of unconventional pairing by the antiferromagnetic spin-fluctuation mechanism is that t...
A key aspect of unconventional pairing by the antiferromagnetic spin-fluctuation mechanism is that t...
Identifying the gap structure of superconductors is vital for understanding the underlying pairing m...
Identifying the gap structure of superconductors is vital for understanding the underlying pairing m...
International audienceIn exotic superconductors, including high-T$_c$ copper oxides, the interaction...
International audienceIn exotic superconductors, including high-T$_c$ copper oxides, the interaction...
International audienceIn exotic superconductors, including high-T$_c$ copper oxides, the interaction...
International audienceIn exotic superconductors, including high-T$_c$ copper oxides, the interaction...
International audienceIn exotic superconductors, including high-T$_c$ copper oxides, the interaction...
International audienceIn exotic superconductors, including high-T$_c$ copper oxides, the interaction...
International audienceIn exotic superconductors, including high-T$_c$ copper oxides, the interaction...
International audienceIn exotic superconductors, including high-T$_c$ copper oxides, the interaction...
International audienceIn exotic superconductors, including high-T$_c$ copper oxides, the interaction...
International audienceIn exotic superconductors, including high-T$_c$ copper oxides, the interaction...
38年を経て明らかになった非従来型超伝導の「先駆け」物質の電子状態. 京都大学プレスリリース. 2017-06-26.In exotic superconductors, including high...
A key aspect of unconventional pairing by the antiferromagnetic spin-fluctuation mechanism is that t...
A key aspect of unconventional pairing by the antiferromagnetic spin-fluctuation mechanism is that t...
Identifying the gap structure of superconductors is vital for understanding the underlying pairing m...
Identifying the gap structure of superconductors is vital for understanding the underlying pairing m...