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Multiple Crossovers And Coherent States In A Mott-peierls Insulator

Title: Multiple Crossovers And Coherent States In A Mott-peierls Insulator.
Name(s): Najera, O., author
Civelli, M., author
Dobrosavljevic, V., author
Rozenberg, M. J., author
Type of Resource: text
Genre: Journal Article
Journal Article
Date Issued: 2018-01-09
Physical Form: computer
online resource
Extent: 1 online resource
Language(s): English
Abstract/Description: We consider the dimer Hubbard model within dynamical mean-field theory to study the interplay and competition between Mott and Peierls physics. We describe the various metal-insulator transition lines of the phase diagram and the breakdown of the different solutions that occur along them. We focus on the specific issue of the debated Mott-Peierls insulator crossover and describe the systematic evolution of the electronic structure across the phase diagram. We found that at low intradimer hopping, the emerging local magnetic moments can unbind above a characteristic singlet temperature T*. Upon increasing the interdimer hopping, subtle changes occur in the electronic structure. Notably, we find Hubbard bands of a mix character with coherent and incoherent excitations. We argue that this statemight be relevant formaterials such as VO2 and its signaturesmay be observed in spectroscopic studies, and possibly through pump-probe experiments.
Identifier: FSU_libsubv1_wos_000419615700005 (IID), 10.1103/PhysRevB.97.045108 (DOI)
Keywords: transition, phase, infinite dimensions, vo2, hubbard
Publication Note: The publisher's version of record is available at
Persistent Link to This Record:
Owner Institution: FSU
Is Part Of: Physical Review B.
Issue: iss. 4, vol. 97

Choose the citation style.
Najera, O., Civelli, M., Dobrosavljevic, V., & Rozenberg, M. J. (2018). Multiple Crossovers And Coherent States In A Mott-peierls Insulator. Physical Review B. Retrieved from