13,075 research outputs found
Fat Fisher Zeroes
We show that it is possible to determine the locus of Fisher zeroes in the
thermodynamic limit for the Ising model on planar (``fat'') phi4 random graphs
and their dual quadrangulations by matching up the real part of the high and
low temperature branches of the expression for the free energy. The form of
this expression for the free energy also means that series expansion results
for the zeroes may be obtained with rather less effort than might appear
necessary at first sight by simply reverting the series expansion of a function
g(z) which appears in the solution and taking a logarithm.
Unlike regular 2D lattices where numerous unphysical critical points exist
with non-standard exponents, the Ising model on planar phi4 graphs displays
only the physical transition at c = exp (- 2 beta) = 1/4 and a mirror
transition at c=-1/4 both with KPZ/DDK exponents (alpha = -1, beta = 1/2, gamma
= 2). The relation between the phi4 locus and that of the dual quadrangulations
is akin to that between the (regular) triangular and honeycomb lattices since
there is no self-duality.Comment: 12 pages + 6 eps figure
Rate of equilibration of a one-dimensional Wigner crystal
We consider a system of one-dimensional spinless particles interacting via
long-range repulsion. In the limit of strong interactions the system is a
Wigner crystal, with excitations analogous to phonons in solids. In a harmonic
crystal the phonons do not interact, and the system never reaches thermal
equilibrium. We account for the anharmonism of the Wigner crystal and find the
rate at which it approaches equilibrium. The full equilibration of the system
requires umklapp scattering of phonons, resulting in exponential suppression of
the equilibration rate at low temperatures.Comment: Prepared for the proceedings of the International School and Workshop
on Electronic Crystals, ECRYS-201
Interaction-induced backscattering in short quantum wires
We study interaction-induced backscattering in clean quantum wires with
adiabatic contacts exposed to a voltage bias. Particle backscattering relaxes
such systems to a fully equilibrated steady state only on length scales
exponentially large in the ratio of bandwidth of excitations and temperature.
Here we focus on shorter wires in which full equilibration is not accomplished.
Signatures of relaxation then are due to backscattering of hole excitations
close to the band bottom which perform a diffusive motion in momentum space
while scattering from excitations at the Fermi level. This is reminiscent to
the first passage problem of a Brownian particle and, regardless of the
interaction strength, can be described by an inhomogeneous Fokker-Planck
equation. From general solutions of the latter we calculate the hole
backscattering rate for different wire lengths and discuss the resulting length
dependence of interaction-induced correction to the conductance of a clean
single channel quantum wire.Comment: 10 pages, 4 figure
Possible ferro-spin nematic order in NiGa2S4
We explore the possibility that the spin-1 triangular lattice magnet NiGa2 S4
may have a ferro-nematic ground state with no frozen magnetic moment but a
uniform quadrupole moment. Such a state may be stabilized by biquadratic spin
interactions. We describe the physical properties of this state and suggest
experiments to help verify this proposal. We also contrast this state with a
`non-collinear' nematic state proposed earlier by Tsunetsugu and Arikawa for
NiGa2S4
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