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Artur Amorim

Publications and source records attributed to Artur Amorim.

6 recordsLinked to original sources

Analyticity of the Lyapunov exponents of random products of matrices

This paper is concerned with the study of random (Bernoulli and Markovian) product of matrices on a compact space of symbols. We establish the analyticity of the maximal Lyapunov exponent as a function of the transition probabilities, thus extending the results and methods of Y. Peres from a finite to an infinite (but compact) space of symbols. Our approach combines the spectral properties of the associated Markov operator with the theory of holomorphic functions in Banach spaces.

math.DS

Deeply Virtual Compton Scattering in Improved Holographic QCD

We present our current progress in the holographic computation of the scattering amplitude for Deeply Virtual Compton Scattering (DVCS) processe, as a function of the Mandelstam invariant $t$. We show that it is possible to describe simultaneously the differential cross-section and total cross-section of DVCS data with a single holographic model for the pomeron. Using data from H1-ZEUS we obtained a $χ^2_{dof} \sim 1.5$ for the best fit to the data.

hep-ph

Regge theory in a Holographic dual of QCD in the Veneziano Limit

We initiate the study of Regge theory in a bottom-up holographic model for QCD in the Veneziano limit, where the backreaction of the quarks to the gluon dynamics is included. We determine the parameters of the model by carrying out a precise fit to the meson spectrum in QCD. The spectrum for spin-one and pseudoscalar mesons is well reproduced. We then generalise the model to incluce higher spin fields in the bulk trajectories dual to the Pomeron and meson Regge trajectories at the boundary. With this setting, we fit the masses of the mesons with spins $J=2$, $3$, and $4$,as well as the experimental data of the total cross-sections $σ(γγ\to X)$, $σ(γp \to X)$ and $σ(p p \to X)$. For the cross sections we obtain a $χ^2_{\mathrm{d.o.f.}}$ of $0.74$ for a total of 199 experimental points.

hep-ph

$γ^* γ$ and $γ^* p$ scattering in IHQCD

We perform joint fits using measurements of the proton structure functions $F_2(x,Q^2)$ and $F_L(x,Q^2)$, of the photon structure function $F_2^γ(x,Q^2)$ and of the total cross-sections $σ\left( γp \rightarrow X\right)$ and $σ\left( γγ\rightarrow X\right)$. The data is gathered from several sources including HERA and LEP. The kinematical range considered is wide with a photon virtuality $Q^2 \leq400 \, {\rm GeV}^2$, Bjorken variable $x<0.01$ and $\sqrt{s} > 4 \, {\rm GeV}$. This is done by considering a $U\left(1\right)$ vector gauge field minimally coupled to the graviton Regge trajectory in improved holographic QCD. We find good agreement with the data for a joint fit of $F_2^γ$ and $σ\left(γγ\rightarrow X\right)$ with a $χ_{d.o.f.}^2 = 1.07$. For a joint fit of $F_2$, $F_L$ and $σ\left( γp \rightarrow X\right)$ we find $χ_{d.o.f.}^2 = 1.40$. A joint fit of all observables for both processes $γ^* γ$ and $γ^* p$ gives a $χ_{d.o.f.}^2 = 1.38$. The gravitational couplings of the $U\left(1\right)$ vector gauge field and of the proton with the Reggeons of the graviton Regge trajectory are given as an output of the fitting procedure. An approximate relation between the structure functions, valid at NLO QCD, is used to estimate the parton distribution function of the gluon inside the proton.

hep-ph

Non-minimal coupling contribution to DIS at low $x$ in Holographic QCD

We consider the effect of including a non-minimal coupling between a $U(1)$ vector gauge field and the graviton Regge trajectory in holographic QCD models. This coupling describes the QCD interaction between the quark bilinear electromagnetic current and the Pomeron. We test this new coupling against DIS data at low Bjorken $x$ and obtain an excellent fit with a chi squared of 1.1 over a very large kinematical range in the photon virtuality $Q^2<400 \ {\rm GeV}^2$ and for $x<10^{-2}$. The scale of the new dimension full coupling, which arises from integrating higher spin fields, is of order $6\ {\rm GeV}$. This value matches precisely the expectations from effective field theory, which indicate that such corrections are controlled by the mass gap between the spin two and spin four glueballs that are described holographically by the graviton and spin four field in the graviton Regge trajectory, respectively

hep-ph

Production of t$γ$, tZ and tH via Flavour Changing Neutral Currents

A UFO model describing general top quark Flavour Changing Neutral Currents is presented. We use it to study t$γ$, tH and tZ production via FCNCs anomalous couplings at the Large Hadron Collider, in particular how the distributions of physical observables depend on the anomalous couplings. A sensitivity study of the Large Hadron Collider experiments to tZ production via FCNC in its second stage of operation is also performed.

hep-ph