The phenomenon of Spin-Charge separation in non-Fermi liquids is well understood only in certain solvable d=1 fermionic systems. In this paper we furnish the first example of asymptotic Spin-Charge separation in a d=1 nonsolvable model. This goal is achieved using Renormalization Group approach combined with Ward-Identities and Schwinger-Dyson equations, corrected by the presence of a bandwidth cut-offs. Such methods, contrary to bosonization, could be in principle applied also to lattice or higher dimensional systems
It is well established that at low energies one-dimensional (1D) fermionic systems are described by ...
We have developed a "bootstrap'' method for solving a class of interacting one-dimensional chiral fe...
We have developed a "bootstrap'' method for solving a class of interacting one-dimensional chiral fe...
The phenomenon of Spin-Charge separation in non-Fermi liquids is well understood only in certain sol...
The phenomenon of Spin-Charge separation in non-Fermi liquids is well understood only in certain sol...
The phenomenon of Spin-Charge separation in non-Fermi liquids is well understood only in certain sol...
The phenomenon of Spin-Charge separation in non-Fermi liquids is well understood only in certain sol...
We develop a nonperturbative zero-temperature theory for the dynamic response functions of interacti...
We develop a nonperturbative zero-temperature theory for the dynamic response functions of interacti...
Systems of interacting non-relativistic fermions in d =1, as well as spin chains or interacting two ...
Systems of interacting non-relativistic fermions in d =1, as well as spin chains or interacting two ...
Systems of interacting non-relativistic fermions in d =1, as well as spin chains or interacting two ...
Systems of interacting non-relativistic fermions in d =1, as well as spin chains or interacting two ...
Systems of interacting non-relativistic fermions in d = 1, as well as spin chains or interacting two...
Systems of interacting non-relativistic fermions in d =1, as well as spin chains or interacting two ...
It is well established that at low energies one-dimensional (1D) fermionic systems are described by ...
We have developed a "bootstrap'' method for solving a class of interacting one-dimensional chiral fe...
We have developed a "bootstrap'' method for solving a class of interacting one-dimensional chiral fe...
The phenomenon of Spin-Charge separation in non-Fermi liquids is well understood only in certain sol...
The phenomenon of Spin-Charge separation in non-Fermi liquids is well understood only in certain sol...
The phenomenon of Spin-Charge separation in non-Fermi liquids is well understood only in certain sol...
The phenomenon of Spin-Charge separation in non-Fermi liquids is well understood only in certain sol...
We develop a nonperturbative zero-temperature theory for the dynamic response functions of interacti...
We develop a nonperturbative zero-temperature theory for the dynamic response functions of interacti...
Systems of interacting non-relativistic fermions in d =1, as well as spin chains or interacting two ...
Systems of interacting non-relativistic fermions in d =1, as well as spin chains or interacting two ...
Systems of interacting non-relativistic fermions in d =1, as well as spin chains or interacting two ...
Systems of interacting non-relativistic fermions in d =1, as well as spin chains or interacting two ...
Systems of interacting non-relativistic fermions in d = 1, as well as spin chains or interacting two...
Systems of interacting non-relativistic fermions in d =1, as well as spin chains or interacting two ...
It is well established that at low energies one-dimensional (1D) fermionic systems are described by ...
We have developed a "bootstrap'' method for solving a class of interacting one-dimensional chiral fe...
We have developed a "bootstrap'' method for solving a class of interacting one-dimensional chiral fe...