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- W2475928411 abstract "The description of electronic inhomogeneities in transition metal compounds requires a technique which is able to deal with the excitations of an inhomogeneous, strongly correlated system. In this talk I will outline the formalism of the timedependent Gutzwiller approximation [1] for the Hubbard model which allows for the computation of random phase approximation (RPA) like fluctuations on top of the Gutzwiller approximation (GA). The performance of the method is demonstrated by comparing static quantities like ground state energy and double occupancies as well as dynamical correlation functions in the charge, spin and pair channels with HartreeFock+RPA and exact results. I will further show that the method gives a good account of several spectroscopic quantities related to stripes in highTc superconductors. A major part of the talk will address the recent generalization of the method to the case of multiple bands [2,3]. Contrary to the standard RPA, the incorporation of the local multipletstructure within our approach leads to a much larger sensitivity of ferromagnetism on the the ratio between Hund coupling and intraorbital repulsion J/U. Besides, we find that the Brinkman Rice localization transition, which in the paramagnetic GA appears at integer doping is always masked by an antiferromagnetic or an orbitally ordered ground state. In addition, a quantum Lifshitz point is found at larger values of J/U which corresponds to the common boundary of ferro, para and incommensurate magnetic phases. [1] G. Seibold and J. Lorenzana, Phys. Rev. Lett. 86, 2605 (2001) [2] E. von Oelsen, G. Seibold, and J. Bunemann, New J. Phys. 13, 113031 (2011) [3] E. v. Oelsen, G. Seibold, and J. Bunemann, Phys. Rev. Lett. 107, 076402 (2011)" @default.
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- W2475928411 date "2012-09-04" @default.
- W2475928411 modified "2023-09-27" @default.
- W2475928411 title "Time-dependent Gutzwiller approximation: Recent advances" @default.
- W2475928411 hasPublicationYear "2012" @default.
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