We rigorously analyze the quantum phase transition between a metallic and an insulating phase in (non-solvable) interacting spin chains or one-dimensional fermionic systems. In particular, we prove the persistence of Luttinger liquid behavior in the presence of an interaction even arbitrarily close to the critical point, where the Fermi velocity vanishes and the two Fermi points coalesce. The analysis is based on two different multiscale analysis; the analysis of the first regime provides gain factors which compensate the small divisors due to the vanishing Fermi velocity
A general procedure for studying finite-N effects in quantum phase transitions of finite systems is ...
Fermi-liquid theory is one of the standard models of condensed matter physics, supplying a valid exp...
In this Thesis we discussed several issues related to the dynamics of isolated quantum many-body sys...
For a quantum spin chain or 1D fermionic system, we prove that the Drude weight D verifies the univ...
We rigorously prove that in three or more dimensions, the nearest-neighbor, simple-cubic, ferromagne...
The behaviour of correlation functions of d = 1 interacting fermionic systems is determined by a sma...
We consider recent results on the use of the single-site entanglement measure for identifying and ch...
AbstractThe scattering theory for a class of fermionic Pauli–Fierz models is considered. We give a p...
We study the isotropic Heisenberg chain with nearest and next-nearest neighbor interactions. The gro...
Il aura fallu plusieurs années après que l'idée d'une transition de phase à température nulle émerge...
Plenty experimental evidence indicates that quantum critical phenomena give rise to much of the rich...
AbstractWe analyse the phase diagram of a quantum mean spherical model in terms of the temperature T...
We discuss shape (Pomeranchuk) instabilities of the Fermi surface of a two-dimensional Fermi system ...
A dimerized quantum Heisenberg or XY antiferromagnetic chain has a gap in the spectrum. We show that...
A new family of free fermionic quantum spin chains with multispin interactions was recently introduc...
A general procedure for studying finite-N effects in quantum phase transitions of finite systems is ...
Fermi-liquid theory is one of the standard models of condensed matter physics, supplying a valid exp...
In this Thesis we discussed several issues related to the dynamics of isolated quantum many-body sys...
For a quantum spin chain or 1D fermionic system, we prove that the Drude weight D verifies the univ...
We rigorously prove that in three or more dimensions, the nearest-neighbor, simple-cubic, ferromagne...
The behaviour of correlation functions of d = 1 interacting fermionic systems is determined by a sma...
We consider recent results on the use of the single-site entanglement measure for identifying and ch...
AbstractThe scattering theory for a class of fermionic Pauli–Fierz models is considered. We give a p...
We study the isotropic Heisenberg chain with nearest and next-nearest neighbor interactions. The gro...
Il aura fallu plusieurs années après que l'idée d'une transition de phase à température nulle émerge...
Plenty experimental evidence indicates that quantum critical phenomena give rise to much of the rich...
AbstractWe analyse the phase diagram of a quantum mean spherical model in terms of the temperature T...
We discuss shape (Pomeranchuk) instabilities of the Fermi surface of a two-dimensional Fermi system ...
A dimerized quantum Heisenberg or XY antiferromagnetic chain has a gap in the spectrum. We show that...
A new family of free fermionic quantum spin chains with multispin interactions was recently introduc...
A general procedure for studying finite-N effects in quantum phase transitions of finite systems is ...
Fermi-liquid theory is one of the standard models of condensed matter physics, supplying a valid exp...
In this Thesis we discussed several issues related to the dynamics of isolated quantum many-body sys...