2012
DOI: 10.48550/arxiv.1206.5531
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Electron-phonon pairing mechanism: cuprates with high value of the critical temperature

R. Szczęśniak,
A. P. Durajski

Abstract: The model for the cuprates based on the modified electron-phonon pairing mechanism has been tested. For this purpose, the superconductors with high value of the critical temperature have been taken into consideration. In particular: YBa2Cu3O7−y, HgBa2CuO4+y, HgBa2Cu1−xZnxO4+y, and HgBa2Ca2Cu3O8+y. It has been shown that the dependence of the ratio R1 ≡ 2∆ (0) tot /kBTC on the doping (p) can be properly predicted in the framework of the presented theory; the symbol ∆ (0) tot denotes the energy gap amplitude at … Show more

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Cited by 3 publications
(3 citation statements)
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“…In the case of SiH 4 (H 2 ) 2 under pressure at 270 GPa and Si 2 H 6 at p = 250 GPa, the theoretical results have predicted the existence of the high-temperature superconducting state: T C = 129.83 K and T C = 173.36 K, respectively [17], [18]. We notice that the above values of the critical temperature are even higher than for the cuprates [19].…”
mentioning
confidence: 73%
“…In the case of SiH 4 (H 2 ) 2 under pressure at 270 GPa and Si 2 H 6 at p = 250 GPa, the theoretical results have predicted the existence of the high-temperature superconducting state: T C = 129.83 K and T C = 173.36 K, respectively [17], [18]. We notice that the above values of the critical temperature are even higher than for the cuprates [19].…”
mentioning
confidence: 73%
“…In addition, the other thermodynamic parameters differ very significantly from the predictions of the BCS theory [24]. In particular, the ratio of the energy gap to the critical temperature assumes values comparable to the values observed in the high-temperature superconductors (cuprates) [23], [25], [26].…”
Section: Introductionmentioning
confidence: 85%
“…For the considered pressure, the low temperature energy * Electronic address: szczesni@wip.pcz.pl gap at the Fermi surface (2∆ (0)) is so large that the dimensionless ratio 2∆ (0) /k B T C equals approximately 6 [15]. The comparable value of 2∆ (0) is only observed in the group of the high-temperature superconductors (cuprates) [16], [17].…”
mentioning
confidence: 97%