Novel theoretical approach in photoemission spectroscopy: application to isotope effect and boron-doped diamond

dc.creatorYu, Jifeng
dc.creatorJi, Kai
dc.creatorNasu, Keiichiro
dc.date2007-12-11
dc.date.accessioned2026-07-07T09:44:55Z
dc.date.available2026-07-07T09:44:55Z
dc.descriptionA new path-integral theory is developed to calculate the photoemission spectra (PES) of correlated many-electron systems. The application to the study on Bi2Sr2CaCu2O8 (Bi2212) and boron-doped diamond (BDD) is discussed in details. It is found that the isotopic shift in the angle-resolved photoemission spectra of Bi2212 is due to the off-diagonal quadratic electron-phonon (e-ph) coupling, whereas the presence of electron-electron repulsion partially suppresses this effect. For the BDD, a semiconductor-metal phase transition, which is induced by increasing the e-ph coupling and dopant concentration, is reproduced by our theory. Additionally, the presence of Fermi edge and phonon step-like structure in PES is found to be due to a co-existence of itinerant and localized electronic states in BDD.
dc.description6 pages, 4 figures, Procs. of LEHTSC 2007, submitted to J. Phys.: Conf. Ser
dc.identifierhttps://arxiv.org/abs/0712.1640
dc.identifierhttp://arxiv.org/abs/0712.1640
dc.identifierJ. Phys.: Conf. Ser. 100, 052100 (2008)
dc.identifierdoi:10.1088/1742-6596/108/1/012017
dc.identifier.urihttp://salesiana.dossiersoluciones.com/handle/123456789/163043
dc.subjectStrongly Correlated Electrons
dc.subjectSuperconductivity
dc.titleNovel theoretical approach in photoemission spectroscopy: application to isotope effect and boron-doped diamond
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