Theory of superconducting T-c of doped fullerenes

被引:33
作者
Alexandrov, AS
Kabanov, VV
机构
[1] UNIV CAMBRIDGE, IRC SUPERCONDUCT, CAMBRIDGE CB3 0HE, ENGLAND
[2] JOINT INST NUCL RES, FRANK LAB NEUTRON PHYS, DUBNA, RUSSIA
关键词
D O I
10.1103/PhysRevB.54.3655
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
We develop the nonadiabatic polaron theory of superconductivity of M(x)C(60) taking into account the polaron band narrowing and realistic electron-phonon and Coulomb interactions. We argue that the crossover from the BCS weak-coupling superconductivity to the strong-coupling polaronic and bipolaronic superconductivity occurs at the BCS coupling constant lambda similar to 1 independent of the adiabatic ratio, and there is nothing ''beyond'' Migdal's theorem except small polarons for any realistic electron-phonon interaction. By the use of the polaronic-type function and the ''exact'' diagonalization in the truncated Hilbert space of vibrons (''phonons'') we calculate the ground-state energy and the electron spectral density of the C-60(-) molecule. This allows us to describe the photoemission spectrum of C-60(-) in a wide energy region and determine the electron-phonon interaction. The strongest coupling is found with the high-frequency pinch A(g)(2) mode and with the Frenkel exciton. We clarify the crucial role of high-frequency bosonic excitations in doped fullerenes which reduce the bare bandwidth and the Coulomb repulsion allowing the intermediate- and low-frequency phonons couple two small polarons in a Cooper pair. The Eliashberg-type equations are solved for low-frequency phonons. The value of the superconducting T-c, its pressure dependence and the isotope effect are found in remarkable agreement with the available experimental data.
引用
收藏
页码:3653 / 3659
页数:7
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