The momentum, fermionic density, spin density, and interaction dependencies of the exponents that control the (k,ω)-plane singular features of the one-fermion spectral functions of a one-dimensional gas of spin-1/2 fermions with repulsive delta-function interaction both at zero and finite magnetic field are studied in detail. Our results refer to energy scales beyond the reach of the low-energy Tomonaga-Luttinger liquid and rely on the pseudofermion dynamical theory for integrable models. The one-fermion spectral weight distributions associated with the spectral functions studied in this paper may be observed in systems of spin-1/2 ultra-cold fermionic atoms in optical lattices
We introduce a method that allows the evaluation of general expressions for the spectral functions o...
International audienceWe examine zero-temperature one-particle spectral functions for the one-dimens...
International audienceWe examine zero-temperature one-particle spectral functions for the one-dimens...
The momentum, fermionic density, spin density, and interaction dependencies of the exponents that co...
© 2021 American Physical Society. Although charge-spin separation has important consequences for the...
In this Letter we report exact results on the infrared asymptotics of the one-particle dynamical cor...
In this Letter we report exact results on the infrared asymptotics of the one-particle dynamical cor...
The momentum, electronic density, spin density, and interaction dependences of the exponents that co...
We develop a nonperturbative zero-temperature theory for the dynamic response functions of interacti...
AbstractThe momentum, electronic density, spin density, and interaction dependences of the exponents...
We develop a nonperturbative zero-temperature theory for the dynamic response functions of interacti...
The momentum, electronic density, spin density, and interaction dependences of the exponents that co...
We consider the one-dimensional gas of fermions with spin S interacting via an attractive δ-function...
International audienceWe examine zero-temperature one-particle spectral functions for the one-dimens...
International audienceWe examine zero-temperature one-particle spectral functions for the one-dimens...
We introduce a method that allows the evaluation of general expressions for the spectral functions o...
International audienceWe examine zero-temperature one-particle spectral functions for the one-dimens...
International audienceWe examine zero-temperature one-particle spectral functions for the one-dimens...
The momentum, fermionic density, spin density, and interaction dependencies of the exponents that co...
© 2021 American Physical Society. Although charge-spin separation has important consequences for the...
In this Letter we report exact results on the infrared asymptotics of the one-particle dynamical cor...
In this Letter we report exact results on the infrared asymptotics of the one-particle dynamical cor...
The momentum, electronic density, spin density, and interaction dependences of the exponents that co...
We develop a nonperturbative zero-temperature theory for the dynamic response functions of interacti...
AbstractThe momentum, electronic density, spin density, and interaction dependences of the exponents...
We develop a nonperturbative zero-temperature theory for the dynamic response functions of interacti...
The momentum, electronic density, spin density, and interaction dependences of the exponents that co...
We consider the one-dimensional gas of fermions with spin S interacting via an attractive δ-function...
International audienceWe examine zero-temperature one-particle spectral functions for the one-dimens...
International audienceWe examine zero-temperature one-particle spectral functions for the one-dimens...
We introduce a method that allows the evaluation of general expressions for the spectral functions o...
International audienceWe examine zero-temperature one-particle spectral functions for the one-dimens...
International audienceWe examine zero-temperature one-particle spectral functions for the one-dimens...