581 research outputs found
Non-perturbative studies of N=2 conformal quiver gauge theories
We study N=2 super-conformal field theories in four dimensions that
correspond to mass-deformed linear quivers with n gauge groups and
(bi-)fundamental matter. We describe them using Seiberg-Witten curves obtained
from an M-theory construction and via the AGT correspondence. We take
particular care in obtaining the detailed relation between the parameters
appearing in these descriptions and the physical quantities of the quiver gauge
theories. This precise map allows us to efficiently reconstruct the
non-perturbative prepotential that encodes the effective IR properties of these
theories. We give explicit expressions in the cases n=1,2, also in the presence
of an Omega-background in the Nekrasov-Shatashvili limit. All our results are
successfully checked against those of the direct microscopic evaluation of the
prepotential a la Nekrasov using localization methods.Comment: 56 pages, 7 figures, PdfLaTeX. v2: a few references added, version to
appear on Fortschritte der Physi
Modular and duality properties of surface operators in N=2* gauge theories
We calculate the instanton partition function of the four-dimensional N=2*
SU(N) gauge theory in the presence of a generic surface operator, using
equivariant localization. By analyzing the constraints that arise from
S-duality, we show that the effective twisted superpotential, which governs the
infrared dynamics of the two-dimensional theory on the surface operator,
satisfies a modular anomaly equation. Exploiting the localization results, we
solve this equation in terms of elliptic and quasi-modular forms which resum
all non-perturbative corrections. We also show that our results, derived for
monodromy defects in the four-dimensional theory, match the effective twisted
superpotential describing the infrared properties of certain two-dimensional
sigma models coupled either to pure N=2 or to N=2* gauge theories.Comment: 51 pages, v3: references added, typos fixed, footnote added, some
small changes in the text, appendix B streamlined. Matches the published
versio
Surface operators in 5d gauge theories and duality relations
We study half-BPS surface operators in 5d N=1 gauge theories compactified on
a circle. Using localization methods and the twisted chiral ring relations of
coupled 3d/5d quiver gauge theories, we calculate the twisted chiral
superpotential that governs the infrared properties of these surface operators.
We make a detailed analysis of the localization integrand, and by comparing
with the results from the twisted chiral ring equations obtain constraints on
the 3d and 5d Chern-Simons levels so that the instanton partition function does
not depend on the choice of integration contour. For these values of the
Chern-Simons couplings, we comment on how the distinct quiver theories that
realize the same surface operator are related to each other by Aharony-Seiberg
dualities.Comment: 39 pages. v2: A few sentences rephrased, references added, and typos
corrected. Matches version published in JHE
CP--odd Correlation in the Decay of Neutral Higgs Boson into , , or
We investigate the possibility of detecting CP--odd angular correlations in
the various decay modes of the neutral Higgs boson including the modes of a
pair, a pair, or a heavy quark pair. It is a natural way to probe
the CP character of the Higgs boson once it is identified. Final state
interactions (i.e. the absorptive decay amplitude) is not required in such
correlations. As an illustrative example we take the fundamental source of the
CP nonconservation to be in the Yukawa couplings of the Higgs boson to the
heavy fermions. A similar correlation in the process is
also proposed. Our analysis of these correlations will be useful for
experiments in future colliders such as LEP II, SSC, LHC or NLC.Comment: 16 pages, plus 8 postscript graphs not posted befor
Clustering in 18O - absolute determination of branching ratios via high-resolution particle spectroscopy
The determination of absolute branching ratios for high-energy states in light nuclei is an important and useful tool for probing the underlying nuclear structure of individual resonances: for example, in establishing the tendency of an excited state towards
α
-cluster structure. Difficulty arises in measuring these branching ratios due to similarities in available decay channels, such as (
18
O,
n
) and (
18
O,
2
n
), as well as differences in geometric efficiencies due to population of bound excited levels in daughter nuclei. Methods are presented using Monte Carlo techniques to overcome these issues
Surface operators, chiral rings and localization in N = 2 gauge theories
We study half-BPS surface operators in supersymmetric gauge theories in four
and five dimensions following two different approaches. In the first approach
we analyze the chiral ring equations for certain quiver theories in two and
three dimensions, coupled respectively to four- and five-dimensional gauge
theories. The chiral ring equations, which arise from extremizing a twisted
chiral superpotential, are solved as power series in the infrared scales of the
quiver theories. In the second approach we use equivariant localization and
obtain the twisted chiral superpotential as a function of the Coulomb moduli of
the four- and five-dimensional gauge theories, and find a perfect match with
the results obtained from the chiral ring equations. In the five-dimensional
case this match is achieved after solving a number of subtleties in the
localization formulas which amounts to choosing a particular residue
prescription in the integrals that yield the Nekrasov-like partition functions
for ramified instantons. We also comment on the necessity of including
Chern-Simons terms in order to match the superpotentials obtained from dual
quiver descriptions of a given surface operator.Comment: 41 pages. v3: typos corrected in the text and in some formulae. Some
sentences rephrased according to the suggestions of the referee. Matches the
version published on JHE
Surface operators, dual quivers and contours
We study half-BPS surface operators in four dimensional N=2 SU(N) gauge
theories, and analyze their low-energy effective action on the four dimensional
Coulomb branch using equivariant localization. We also study surface operators
as coupled 2d/4d quiver gauge theories with an SU(N) flavour symmetry. In this
description, the same surface operator can be described by different quivers
that are related to each other by two dimensional Seiberg duality. We argue
that these dual quivers correspond, on the localization side, to distinct
integration contours that can be determined by the Fayet-Iliopoulos parameters
of the two dimensional gauge nodes. We verify the proposal by mapping the
solutions of the twisted chiral ring equations of the 2d/4d quivers onto
individual residues of the localization integrand.Comment: 42 pages. v2: Sections 4 and 5 partially restructured in order to
describe in a more compact ad unified way the association of contours to
quiver
Determining the Structure of Higgs Couplings at the LHC
Higgs boson production via weak boson fusion at the CERN Large Hadron
Collider has the capability to determine the dominant CP nature of a Higgs
boson, via the tensor structure of its coupling to weak bosons. This
information is contained in the azimuthal angle distribution of the two
outgoing forward tagging jets. The technique is independent of both the Higgs
boson mass and the observed decay channel.Comment: 5 pages, 4 figures, version accepted for publication in PR
Response to letter to the editor regarding physical restraint in psychiatric setting
The following letter addresses the issues of the applicability of physical restriction, with particular attention to the therapeutic regime and its meaning as a therapeutic or restrictive provision, while considering possible alternative measures in the context of Italian jurisprudence. The letter, in response to the questions posed by Cioffi and Tomassini, examines the possible legal implications for doctors and suggests that the integration of jurisprudence and psychiatry seems to be mandatory to define the operational protocols for the management of physical restraint. Introduzione. La seguente lettera affronta il problema relativo all’applicabilità della contenzione fisica, con particolare riferimento al regime terapeutico, nonché la sua valenza giuridica quale misura terapeutica o restrittiva, considerando eventuali approcci alternativi. La lettera, in risposta alle domande poste da Cioffi e Tomassini, esamina le possibili implicazioni legali cui possono incorrere i medici nell’applica-re la contenzione fisica, suggerendo la necessità di un’integrazione tra le norme giurisprudenziale e la scienza psichiatrica, al fine di definire i protocolli operativi di gestione della contenzione fisica
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