9,325 research outputs found
Theory of Electron Differentiation, Flat Dispersion and Pseudogap Phenomena
Aspects of electron critical differentiation are clarified in the proximity
of the Mott insulator. The flattening of the quasiparticle dispersion appears
around momenta and on square lattices and determines the
criticality of the metal-insulator transition with the suppressed coherence in
that momentum region of quasiparticles. Such coherence suppression at the same
time causes an instability to the superconducting state if a proper incoherent
process is retained. The d-wave pairing interaction is generated from such
retained processes without disturbance from the coherent single-particle
excitations. Pseudogap phenomena widely observed in the underdoped cuprates are
then naturally understood from the mode-mode coupling of d-wave
superconducting(dSC) fluctuations with antiferromagnetic ones. When we assume
the existence of a strong d-wave pairing force repulsively competing with
antiferromagnetic(AFM) fluctuations under the formation of flat and damped
single-particle dispersion, we reproduce basic properties of the pseudogap seen
in the magnetic resonance, neutron scattering, angle resolved photoemission and
tunneling measurements in the cuprates.Comment: 9 pages including 2 figures, to appear in J. Phys. Chem. Solid
Nonequilibrium Pump-Probe Photoexcitation as a Tool for Analyzing Unoccupied Equilibrium States of Correlated Electrons
Relaxation of electrons in a Hubbard model coupled to a dissipative bosonic
bath is studied to simulate the pump-probe photoemission measurement. From this
insight, we propose an experimental method of eliciting unoccupied part of the
single-particle spectra at the equilibrium of doped-Mott insulators. We reveal
first that effective temperatures of distribution functions and electronic
spectra are different during the relaxation, which makes the frequently
employed thermalization picture inappropriate. Contrary to the conventional
analysis, we show that the unoccupied spectra at equilibrium can be detected as
the states that relax faster.Comment: 9 pages, 7 figure
- …
