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Terahertz Optics in Strongly Correlated Electron Systems
Exotic materials with strongly correlated electron systems (SCES) are of considerable interest to researchers engaged in fundamental and practical... -
Larmor precession in strongly correlated itinerant electron systems
Many-electron systems undergo a collective Larmor precession in the presence of a magnetic field. In a paramagnetic metal, the resulting spin wave...
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Dynamical Variational Principles for Strongly Correlated Electron Systems
The self-energy-functional approach (SFA) is discussed in the context of different variational principles for strongly correlated electron systems.... -
Excitonic Order in Strongly Correlated Systems with the Spin Crossover
Features of the formation of the magnetic structure and the exciton Bose–Einstein condensate phase of magnetic excitons in strongly correlated...
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Photoinduced Enhancement of the Excitonic Order in Strongly Correlated Electron Systems with the Spin Crossover
A new mechanism of the photoinduced enhancement of the excitonic order in strongly correlated electron systems with the spin crossover through the...
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Sub-cycle multidimensional spectroscopy of strongly correlated materials
Strongly correlated solids are complex and fascinating quantum systems, where new electronic states continue to emerge, especially when interaction...
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Topological States in Strongly Correlated Systems
Topological order in strongly correlated systems, including quantum spin liquids, quantum Hall states in lattices and topological superconductivity,...
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Semiclassical Magnetization Dynamics and Electron Paramagnetic Resonance in Presence of Magnetic Fluctuations in Strongly Correlated Systems
Semiclassical magnetization dynamics in presence of magnetic fluctuations (including the quantum ones) is derived for a strongly correlated...
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Photoinduced Nonlinear Dynamics of Strongly Correlated Systems with Spin Crossover: Autocatalytic Spin Transition
Nonlinear phenomena similar to the Belousov–Zhabotinsky reaction (autocatalytic oscillations of the population of high-spin and low-spin...
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Band Flattening and Landau Level Merging in Strongly-Correlated Two-Dimensional Electron Systems
We review recent experimental results indicating the band flattening and Landau level merging at the chemical potential in strongly-correlated...
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The interplay of field-tunable strongly correlated states in a multi-orbital moiré system
The interplay of charge, spin, lattice and orbital degrees of freedom leads to a variety of emergent phenomena in strongly correlated systems. In...
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Phase Separation in Strongly Correlated Systems with Two Electron Bands
We discuss the tendency toward phase separation in the two-band model withCoulomb interactionintraband and interband intraband and interband Coulomb... -
Electron Interaction-Driven Peculiarities of Strongly Correlated System Thermopower
In the present work, we make use of the theoretical model of electron subsystem for strongly correlated compound with a peculiar density of... -
Electronic States and the Anomalous Hall Effect in Strongly Correlated Topological Systems
AbstractElementary excitations, the spin-liquid state, and the anomalous Hall effect, including the quantum Hall effect, are considered in layered...
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Slow and non-equilibrium dynamics due to electronic ferroelectricity in a strongly-correlated molecular conductor
Ferroelectricity, where electronic degrees of freedom determine the polar order—thereby enabling fast switching and phase control—is an important...
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On the dynamical kernels of fermionic equations of motion in strongly-correlated media
Two-point fermionic propagators in strongly-correlated media are considered with an emphasis on the dynamical interaction kernels of their equations...
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Light emission from strongly driven many-body systems
Strongly driven systems of emitters offer an attractive source of light over broad spectral ranges up to the X-ray region. A key limitation of these...
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Mean field theory for strongly coupled systems: Holographic approach
In this paper, we develop the holographic mean field theory for strongly interacting fermion systems. We investigate various types of the...
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Recent progress on cluster and meron algorithms for strongly correlated systems
Ab initio studies of strongly interacting bosonic and fermionic systems are greatly facilitated by efficient Monte Carlo algorithms. This article...