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Itinerant effects and enhanced magnetic interactions in Bi-based multilayer cuprates

Authors :
Dean, M. P. M.
James, A. J. A.
Walters, A. C.
Bisogni, V.
Jarrige, I.
Hücker, M.
Giannini, E.
Fujita, M.
Pelliciari, J.
Huang, Y. B.
Konik, R. M.
Schmitt, T.
Hill, J. P.
Dean, M. P. M.
James, A. J. A.
Walters, A. C.
Bisogni, V.
Jarrige, I.
Hücker, M.
Giannini, E.
Fujita, M.
Pelliciari, J.
Huang, Y. B.
Konik, R. M.
Schmitt, T.
Hill, J. P.

Abstract

The cuprate high temperature superconductors exhibit a pronounced trend in which the superconducting transition temperature Tc increases with the number of CuO2 planes n in the crystal structure. We compare the magnetic excitation spectrum of Bi2+xSr2−xCuO6+δ (Bi-2201) and Bi2Sr2Ca2Cu3O10+δ (Bi-2223), with n = 1 and 3, respectively, using Cu L3-edge resonant inelastic x-ray scattering. Near the antinodal zone boundary we find the paramagnon energy in Bi-2223 is substantially higher than that in Bi-2201, indicating that multilayer cuprates host stronger effective magnetic exchange interactions, providing a possible explanation for the Tc vs n scaling. In contrast, the nodal direction exhibits very strongly damped, almost nondispersive excitations. We argue that this implies that the magnetism in the doped cuprates is partially itinerant in nature.

Details

Database :
OAIster
Notes :
application/pdf, Dean, M. P. M.; James, A. J. A. ; Walters, A. C.; Bisogni, V.; Jarrige, I.; Hücker, M.; Giannini, E.; Fujita, M.; Pelliciari, J.; Huang, Y. B.; Konik, R. M.; Schmitt, T. and Hill, J. P. (2014). Itinerant effects and enhanced magnetic interactions in Bi-based multilayer cuprates. Physical Review B, 90(22), article no. 220506(R).
Publication Type :
Electronic Resource
Accession number :
edsoai.on1108511489
Document Type :
Electronic Resource