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- W4293396654 abstract "The ancient phrase, All roads lead to Rome applies to Chemistry and Physics. Both are highly evolved sciences, with their own history, traditions, language, and approaches to problems. Despite all these differences, these two roads generally lead to the same place. For high temperature cuprate superconductors however, the Chemistry and Physics roads do not meet or even come close to each other. In this paper, we analyze the physics and chemistry approaches to the doped electronic structure of cuprates and find the chemistry doped hole (out-of-the-CuO$mathrm{_2}$-planes) leads to explanations of a vast array of normal state cuprate phenomenology using simple counting arguments. The chemistry picture suggests that phonons are responsible for superconductivity in cuprates. We identify the important phonon modes, and show that the observed T$mathrm{_c} sim 100$ K, the T$mathrm{_c}$-dome as a function of hole doping, the change in T$mathrm{_c}$ as a function of the number of CuO$mathrm{_2}$ layers per unit cell, the lack of an isotope effect at optimal T$mathrm{_c}$ doping, and the D-wave symmetry of the superconducting Cooper pair wavefunction are all explained by the chemistry picture. Finally, we show that crowding the dopants in cuprates leads to a pair wavefunction with S-wave symmetry and T$mathrm{_c}approx280-390$ K. Hence, we believe there is enormous latent T$mathrm{_c}$ remaining in the cuprate class of superconductors." @default.
- W4293396654 created "2022-08-28" @default.
- W4293396654 creator A5084560332 @default.
- W4293396654 date "2017-02-16" @default.
- W4293396654 modified "2023-09-27" @default.
- W4293396654 title "Latent Room-Temperature T$_c$ in Cuprate Superconductors" @default.
- W4293396654 doi "https://doi.org/10.48550/arxiv.1702.05001" @default.
- W4293396654 hasPublicationYear "2017" @default.
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