The behaviour of correlation functions of d = 1 interacting fermionic systems is determined by a small number of critical indices. We prove that one of them is exactly zero. As a consequence, the behavior of the Fourier transform of the density-density correlation at zero momentum is qualitatively unaffected by the interaction, contrary to what happens at ±2p̃F, if p̃F is the Fermi momentum. The result is obtained by implementing Ward identities in a Renormalization Group approach
The critical behavior of one-dimensional interacting Fermi systems is expected to display universal...
We determine, by numerical simulations on a lattice, the gauge-invariant two-point correlation funct...
AbstractThe phase diagram of the Gross–Neveu (GN) model in 2+1 dimensions as a function of chemical ...
The behaviour of correlation functions of d = 1 interacting fermionic systems is determined by a sma...
We rigorously analyze the quantum phase transition between a metallic and an insulating phase in (no...
For a quantum spin chain or 1D fermionic system, we prove that the Drude weight D verifies the univ...
We consider gapless models of statistical mechanics. At zero temperatures correlation functions deca...
A quantitative prediction of Conformal Field Theory (CFT), which relates the second moment of the en...
Analytical expressions are given for the static structure factor S(k) and the pair correlation func...
Recently the leading order of the correlation energy of a Fermi gas in a coupled mean-field and semi...
We investigate the effects of thermal fluctuations on the spontaneous magnetic condensate in three d...
Cooled down and diluted quark-gluon matter is considered. A possibility of condensation of multiquar...
We establish limitations to how well one can mollify the Riemann zeta-function on the critical line ...
We study a two dimensional two species Fermi gas with attractive short-range interactions at zero te...
I review the properties of the three-dimensional Gross-Neveu model formulated with non-zero chemical...
The critical behavior of one-dimensional interacting Fermi systems is expected to display universal...
We determine, by numerical simulations on a lattice, the gauge-invariant two-point correlation funct...
AbstractThe phase diagram of the Gross–Neveu (GN) model in 2+1 dimensions as a function of chemical ...
The behaviour of correlation functions of d = 1 interacting fermionic systems is determined by a sma...
We rigorously analyze the quantum phase transition between a metallic and an insulating phase in (no...
For a quantum spin chain or 1D fermionic system, we prove that the Drude weight D verifies the univ...
We consider gapless models of statistical mechanics. At zero temperatures correlation functions deca...
A quantitative prediction of Conformal Field Theory (CFT), which relates the second moment of the en...
Analytical expressions are given for the static structure factor S(k) and the pair correlation func...
Recently the leading order of the correlation energy of a Fermi gas in a coupled mean-field and semi...
We investigate the effects of thermal fluctuations on the spontaneous magnetic condensate in three d...
Cooled down and diluted quark-gluon matter is considered. A possibility of condensation of multiquar...
We establish limitations to how well one can mollify the Riemann zeta-function on the critical line ...
We study a two dimensional two species Fermi gas with attractive short-range interactions at zero te...
I review the properties of the three-dimensional Gross-Neveu model formulated with non-zero chemical...
The critical behavior of one-dimensional interacting Fermi systems is expected to display universal...
We determine, by numerical simulations on a lattice, the gauge-invariant two-point correlation funct...
AbstractThe phase diagram of the Gross–Neveu (GN) model in 2+1 dimensions as a function of chemical ...