arXiv · cond-mat/0105091
A New Method of Probing the Phonon Mechanism in Superconductors including MgB$_{2}$
Abstract
Weak localization has a strong influence on both the normal and superconducting properties of metals. In particular, since weak localization leads to the decoupling of electrons and phonons, the temperature dependence of resistance (i.e., $λ_{tr}$) is decreasing with increasing disorder, as manifested by Mooij's empirical rule. In addition, Testardi's universal correlation of $T_{c}$ (i.e., $λ$) and the resistance ratio (i.e., $λ_{tr}$) follows. This understanding provides a new means to probe the phonon mechanism in superconductors including MgB$_{2}$. The merits of this method are its applicability to any superconductors and its reliability because the McMillan's electron-phonon coupling constant $λ$ and $λ_{tr}$ change in a broad range, from finite values to zero, due to weak localization. Karkin et al's preliminary data of irradiated MgB$_{2}$ show the Testardi correlation, indicating that the dominant pairing mechanism in MgB$_{2}$ is the phonon-mediated interaction.
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Mi-Ae Park, Kerim Savran, Yong-Jihn Kim. 2001-05-04. A New Method of Probing the Phonon Mechanism in Superconductors including MgB$_{2}$. https://doi.org/10.1088/0953-2048%2F14%2F7%2F103
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