© 2021 American Physical Society. Although charge-spin separation has important consequences for the properties of one-dimensional (1D) Mott-Hubbard insulators, matrix elements in some of its dynamical correlation functions involve the coupling of spin and charge degrees of freedom. The corresponding interplay of the 1D Mott-Hubbard insulator's charge and spin degrees of freedom is an issue of both fundamental and technological interest, for instance, concerning their dynamics at subpicosecond timescales. On the other hand, the up- A nd down-spin one-particle spectral functions are the simplest dynamical correlation functions that involve excitation of both the charge and spin degrees of freedom. They are thus suitable to extract basic...
An exact expression for the Green's function G(k,omega) of one hole in the U --> infinity one-dimens...
An exact expression for the Green's function G(k,omega) of one hole in the U --> infinity one-dimens...
I construct the spectral function of the Luther-Emery model which describes one-dimensional fermions...
The momentum, electronic density, spin density, and interaction dependences of the exponents that co...
AbstractThe momentum, electronic density, spin density, and interaction dependences of the exponents...
The momentum, electronic density, spin density, and interaction dependences of the exponents that co...
AbstractThe momentum, electronic density, spin density, and interaction dependences of the exponents...
The recent advances in angle-resolved photoemission techniques allowed the unambiguous experimental ...
The recent advances in angle-resolved photoemission techniques allowed the unambiguous experimental ...
The recent advances in angle-resolved photoemission techniques allowed the unambiguous experimental ...
The recent advances in angle-resolved photoemission techniques allowed the unambiguous experimental ...
The recent advances in angle-resolved photoemission techniques allowed the unambiguous experimental ...
An exact expression for the Green's function G(k,omega) of one hole in the U --> infinity one-dimens...
An exact expression for the Green's function G(k,omega) of one hole in the U --> infinity one-dimens...
An exact expression for the Green's function G(k,omega) of one hole in the U --> infinity one-dimens...
An exact expression for the Green's function G(k,omega) of one hole in the U --> infinity one-dimens...
An exact expression for the Green's function G(k,omega) of one hole in the U --> infinity one-dimens...
I construct the spectral function of the Luther-Emery model which describes one-dimensional fermions...
The momentum, electronic density, spin density, and interaction dependences of the exponents that co...
AbstractThe momentum, electronic density, spin density, and interaction dependences of the exponents...
The momentum, electronic density, spin density, and interaction dependences of the exponents that co...
AbstractThe momentum, electronic density, spin density, and interaction dependences of the exponents...
The recent advances in angle-resolved photoemission techniques allowed the unambiguous experimental ...
The recent advances in angle-resolved photoemission techniques allowed the unambiguous experimental ...
The recent advances in angle-resolved photoemission techniques allowed the unambiguous experimental ...
The recent advances in angle-resolved photoemission techniques allowed the unambiguous experimental ...
The recent advances in angle-resolved photoemission techniques allowed the unambiguous experimental ...
An exact expression for the Green's function G(k,omega) of one hole in the U --> infinity one-dimens...
An exact expression for the Green's function G(k,omega) of one hole in the U --> infinity one-dimens...
An exact expression for the Green's function G(k,omega) of one hole in the U --> infinity one-dimens...
An exact expression for the Green's function G(k,omega) of one hole in the U --> infinity one-dimens...
An exact expression for the Green's function G(k,omega) of one hole in the U --> infinity one-dimens...
I construct the spectral function of the Luther-Emery model which describes one-dimensional fermions...