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Magnetic-Field-Induced Odd-Frequency Superconductivity in MgB$_2$

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arxiv 1503.05155 v1 pith:4VTPOJY4 submitted 2015-03-17 cond-mat.supr-con

classification cond-mat.supr-con
keywords odd-frequencysuperconductivityevenfrequencymagneticpairpairingamplitudes
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abstract

In all known superconductors the pairing of fermions is not sensitive to the sign of their time-argument difference, leading to a Cooper pair wavefunction that is even in time/frequency. Four decades ago it was suggested that odd-frequency superconductivity should in principle be realizable. However, observation of odd-frequency superconductivity in bulk materials has remained elusive. Solving the field-dependent anisotropic Eliashberg equations, we present \textit{ab initio} evidence for the emergence of odd-frequency pairing under an applied magnetic field in the archetypal superconductor MgB$_2$. We provide the full momentum, frequency and spin resolved dependence and magnetic field-temperature phase diagrams of the even and odd-frequency superconducting pair amplitudes and predict fingerprints of the odd-frequency state in tunnelling experiments.

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