The momentum and energy dependence of the weight distribution in the vicinity of the one-electron spectral-function singular branch lines of the 1D Hubbard model is studied for all values of the electronic density and on-site repulsion U. To achieve this goal, we use the recently introduced pseudofermion dynamical theory. Our predictions agree quantitatively for the whole momentum and energy bandwidth with the peak dispersions observed by angle-resolved photoelectron spectroscopy in the quasi-1D organic conductor TTF-TCNQ
The recent advances in angle-resolved photoemission techniques allowed the unambiguous experimental ...
The recent advances in angle-resolved photoemission techniques allowed the unambiguous experimental ...
© 2021 American Physical Society. Although charge-spin separation has important consequences for the...
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...
We introduce a method that allows the evaluation of general expressions for the spectral functions o...
We present a method for the calculation of few-electron spectral functions of the one-dimen- sional ...
We present a method for the calculation of few-electron spectral functions of the one-dimen- sional ...
AbstractThe momentum, electronic density, spin density, and interaction dependences of the exponents...
In this paper we show that the general finite-energy spectral-function expressions provided by the p...
The momentum, electronic density, spin density, and interaction dependences of the exponents that co...
A dynamical theory which accounts for all microscopic one-electron processes is used to study the sp...
In this paper we consider the one-dimensional Hubbard model and study the deviations from the ground...
6 pages, 7 FiguresInternational audienceWe study the temperature dependence of the single particle s...
We study the charge dynamic structure factor of the one-dimensional Hubbard model with finite on-sit...
The recent advances in angle-resolved photoemission techniques allowed the unambiguous experimental ...
The recent advances in angle-resolved photoemission techniques allowed the unambiguous experimental ...
© 2021 American Physical Society. Although charge-spin separation has important consequences for the...
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...
We introduce a method that allows the evaluation of general expressions for the spectral functions o...
We present a method for the calculation of few-electron spectral functions of the one-dimen- sional ...
We present a method for the calculation of few-electron spectral functions of the one-dimen- sional ...
AbstractThe momentum, electronic density, spin density, and interaction dependences of the exponents...
In this paper we show that the general finite-energy spectral-function expressions provided by the p...
The momentum, electronic density, spin density, and interaction dependences of the exponents that co...
A dynamical theory which accounts for all microscopic one-electron processes is used to study the sp...
In this paper we consider the one-dimensional Hubbard model and study the deviations from the ground...
6 pages, 7 FiguresInternational audienceWe study the temperature dependence of the single particle s...
We study the charge dynamic structure factor of the one-dimensional Hubbard model with finite on-sit...
The recent advances in angle-resolved photoemission techniques allowed the unambiguous experimental ...
The recent advances in angle-resolved photoemission techniques allowed the unambiguous experimental ...
© 2021 American Physical Society. Although charge-spin separation has important consequences for the...