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Driven emergent phases in small interacting condensed-matter systems
Univ Connecticut, 196A Auditorium Rd,U-3046, Storrs, CT 06269 USA..
KTH, Centres, Nordic Institute for Theoretical Physics NORDITA.ORCID iD: 0000-0001-9285-0165
Univ Connecticut, 196A Auditorium Rd,U-3046, Storrs, CT 06269 USA..
Univ Sri Jayewardenepura, Dept Phys, Nugegoda, Sri Lanka..
2021 (English)In: Europhysics letters, ISSN 0295-5075, E-ISSN 1286-4854, Vol. 134, no 3, p. 37004-, article id 37004Article in journal (Refereed) Published
Abstract [en]

Single- and many-electron calculations and related dynamics are presented for a dimer and small Hubbard clusters. The Floquet-Bloch picture for a periodic dimer is discussed with regard to the time dependence of the Peierls gap and the expectation of the current operator. In driven Fermi-Hubbard clusters, the time dependence of charge gaps and phase separation along with charge pairing at various cluster sizes indicate the presence and absence of paired electron states. We examine the effect of electromagnetic time-dependent external perturbations on Hubbard many-electron systems in our search of for precursors to superconducting states and time crystals. Two principally different kinds of electromagnetic excitations are analyzed: 1) the recently demonstrated dynamic modulation of Hubbard parameters due to excitation of certain phonon modes within the far-infrared domain, and 2) the Hubbard Hamiltonian, with fixed parameters in an electromagnetic field, resonant with transitions between the ground state and high-energy excited states as possible precursors to superconductivity, within visible-near-infrared domains.

Place, publisher, year, edition, pages
IOP Publishing , 2021. Vol. 134, no 3, p. 37004-, article id 37004
National Category
Condensed Matter Physics
Identifiers
URN: urn:nbn:se:kth:diva-306805DOI: 10.1209/0295-5075/134/37004ISI: 000731474100016Scopus ID: 2-s2.0-85111250776OAI: oai:DiVA.org:kth-306805DiVA, id: diva2:1626180
Note

QC 20220110

Available from: 2022-01-10 Created: 2022-01-10 Last updated: 2022-06-25Bibliographically approved

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Geilhufe, Matthias

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