467 research outputs found
Remarks on the Gauge Dependence of the RI/MOM Renormalization Procedure
The RI/MOM non-perturbative renormalization scheme is studied on the lattice
in SU(3) quenched QCD with Wilson fermions. The gauge dependence of some
fermion bilinear renormalization constants is discussed by comparing data which
have been gauge-fixed in two different realizations of the Landau gauge and in
a generic covariant gauge. The very good agreement between the various sets of
results and the theory indicates that the numerical uncertainty induced by the
lattice gauge-fixing procedure is moderate and below the statistical errors.Comment: 11 pages, 3 figure
-potential: a numerical study
We report the results of recent lattice simulations aimed at computing the
and potential energies in the singlet and the octet (adjoint)
representation.Comment: 7 pages, 4 figures, poster presented at the 31st International
Symposium on Lattice Field Theory (Lattice 2013), 29 July - 3 August 2013,
Mainz, German
On the color structure of Yang-Mills theory with static sources in a periodic box
We present an exploratory numerical study on the lattice of the color
structure of the wave functionals of the SU(3) Yang-Mills theory in the
presence of a static pair. In a spatial box with periodic boundary
conditions we discuss the fact that all states contributing to the Feynman
propagation kernel are global color singlets. We confirm this numerically by
computing the correlations of gauge-fixed Polyakov lines with color-twisted
boundary conditions in the time direction. The values of the lowest energies in
the color singlet and octet external source sectors agree within statistical
errors, confirming that both channels contribute to the lowest (global singlet)
state of the Feynman kernel. We then study the case of homogeneous boundary
conditions in the time direction for which the gauge-fixing is not needed. In
this case the lowest energies extracted in the singlet external source sector
agree with those determined with periodic boundary conditions, while in the
octet sector the correlator is compatible with being null within our
statistical errors. Therefore consistently only the singlet external source
contribution has a non-vanishing overlap with the null-field wave functional.Comment: 9 pages, 3 figure
SU(2) Glueballs, diquarks and mesons in dense matter
We present preliminary results from a high statistics study of 2-color QCD at
low temperature and non-zero baryon density. The simulations are carried out on
a 6^3*12 lattice and use a standard hybrid molecular dynamics algorithm for
staggered fermions for two values of quark mass. Observables include glueball
correlators evaluated via a multi-step smearing procedure as well as scalar and
vector mesons and diquarks.Comment: Poster presented at Lattice 2003 (Non zero temperature and density),
3 pages, 4 figure
Glueballs and mesons in the superfluid phase of two-color QCD
QCD with two colors undergoes a transition to a superfluid phase with diquark
condensate when the quark chemical potential equals half the pion mass. We
investigate the gluonic aspects of the transition by inspecting the behavior of
the glueball correlators evaluated via a multi-step smearing procedure for
several values of chemical potential ranging between zero and the saturation
threshold. The results are based on an analysis of 0++ glueball correlators, on
a sample of 40000 independent configurations on each parameter set. The
amplitudes of the correlators peak for \mu = m_\pi/2,indicating that the
superfluid phase transition affects the gluonic sector as well. The mass of the
fundamental state decreases in the superfluid phase, and the amplitude of the
propagators drops, suggesting a reduction of the gluon condensate, in agreement
with model calculations. The analysis of the smearing dependence of the results
helps disentangling the role of long and short distance phenomena at the
superfluid transition.Comment: 7 pages, 5 figures, talk presented at the XXV International Symposium
on Lattice Field Theory, July 30 - August 4, 2007, Regensburg,German
How To Fix Non-Perturbatively A Parameter Dependent Covariant Gauge On The Lattice
We describe how to overcome some problems that usually prevent from obtaining
an efficient algorithm to fix a generic covariant gauge on the lattice. This
gauge is the lattice equivalent of the generic gauge usually adopted in
perturbative calculations. It depends on a parameter whose value can be varied
in order to check the gauge dependence of measured matrix elements.Comment: 3 pages, 2 eps figures, LATTICE 9
Radiation therapy for neovascular age-related macular degeneration
Antivascular endothelial growth factor (anti-VEGF) therapies represent the standard of care for most patients presenting with neovascular (wet) age-related macular degeneration (neovascular AMD). Anti-VEGF drugs require repeated injections and impose a considerable burden of care, and not all patients respond. Radiation targets the proliferating cells that cause neovascular AMD, including fibroblastic, inflammatory, and endothelial cells. Two new neovascular AMD radiation treatments are being investigated: epimacular brachytherapy and stereotactic radiosurgery. Epimacular brachytherapy uses beta radiation, delivered to the lesion via a pars plana vitrectomy. Stereotactic radiosurgery uses low voltage X-rays in overlapping beams, directed onto the lesion. Feasibility data for epimacular brachytherapy show a greatly reduced need for anti-VEGF therapy, with a mean vision gain of 8.9 ETDRS letters at 12 months. Pivotal trials are underway (MERLOT, CABERNET). Preliminary stereotactic radiosurgery data suggest a mean vision gain of 8 to 10 ETDRS letters at 12 months. A large randomized sham controlled stereotactic radiosurgery feasibility study is underway (CLH002), with pivotal trials to follow. While it is too early to conclude on the safety and efficacy of epimacular brachytherapy and stereotactic radiosurgery, preliminary results are positive, and these suggest that radiation offers a more durable therapeutic effect than intraocular injections
Lattice Gauge Fixing for Parameter Dependent Covariant Gauges
We propose a non-perturbative procedure to fix generic covariant gauges on
the lattice. Varying the gauge parameter, this gauge fixing provides a concrete
method to check numerically the gauge dependence of correlators measured on the
lattice. The new algorithm turns out to converge with a good efficiency. As a
preliminary physical result, we find a sensitive dependence of the gluon
propagator on the gauge parameter.Comment: 10 pages (LaTeX2e), 5 eps figure
On the Definition of Gauge Field Operators in Lattice Gauge-Fixed Theories
We address the problem of defining the gauge four-potential on the lattice,
in terms of the natural link variables. Different regularized definitions are
shown, through non perturbative numerical computation, to converge towards the
same continuum renormalized limit.Comment: 8 pages, LaTeX2e/LaTeX209, 3 eps figure
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