48 research outputs found

    Differential cross sections and spin density matrix elements for the reaction gamma p -> p omega

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    High-statistics differential cross sections and spin density matrix elements for the reaction gamma p -> p omega have been measured using the CLAS at Jefferson Lab for center-of-mass (CM) energies from threshold up to 2.84 GeV. Results are reported in 112 10-MeV wide CM energy bins, each subdivided into cos(theta_CM) bins of width 0.1. These are the most precise and extensive omega photoproduction measurements to date. A number of prominent structures are clearly present in the data. Many of these have not previously been observed due to limited statistics in earlier measurements

    Exclusive ρ0\rho^0 electroproduction on the proton at CLAS

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    The epepρ0e p\to e^\prime p \rho^0 reaction has been measured, using the 5.754 GeV electron beam of Jefferson Lab and the CLAS detector. This represents the largest ever set of data for this reaction in the valence region. Integrated and differential cross sections are presented. The WW, Q2Q^2 and tt dependences of the cross section are compared to theoretical calculations based on tt-channel meson-exchange Regge theory on the one hand and on quark handbag diagrams related to Generalized Parton Distributions (GPDs) on the other hand. The Regge approach can describe at the \approx 30% level most of the features of the present data while the two GPD calculations that are presented in this article which succesfully reproduce the high energy data strongly underestimate the present data. The question is then raised whether this discrepancy originates from an incomplete or inexact way of modelling the GPDs or the associated hard scattering amplitude or whether the GPD formalism is simply inapplicable in this region due to higher-twists contributions, incalculable at present.Comment: 29 pages, 29 figure

    Nutrient supply affects the mRNA expression profile of the porcine skeletal muscle

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    Background: The genetic basis of muscle fat deposition in pigs is not well known. So far, we have only identified a limited number of genes involved in the absorption, transport, storage and catabolism of lipids. Such information is crucial to interpret, from a biological perspective, the results of genome-wide association analyses for intramuscular fat content and composition traits. Herewith, we have investigated how the ingestion of food changes gene expression in the gluteus medius muscle of Duroc pigs. Results: By comparing the muscle mRNA expression of fasted pigs (T0) with that of pigs sampled 5 h (T1) and 7 h (T2) after food intake, we have detected differential expression (DE) for 148 (T0-T1), 520 (T0-T2) and 135 (T1-T2) genes (q-value of 1.5). Many of these DE genes were transcription factors, suggesting that we have detected the coordinated response of the skeletal muscle to nutrient supply. We also found DE genes with a dual role in oxidative stress and angiogenesis (THBS1, THBS2 and TXNIP), two biological processes that are probably activated in the post-prandial state. Finally, we have identified several loci playing a key role in the modulation of circadian rhythms (ARNTL, PER1, PER2, BHLHE40, NR1D1, SIK1, CIART and CRY2), a result that indicates that the porcine muscle circadian clock is modulated by nutrition. Conclusion: We have shown that hundreds of genes change their expression in the porcine skeletal muscle in response to nutrient intake. Many of these loci do not have a known metabolic role, a result that suggests that our knowledge about the genetic basis of muscle energy homeostasis is still incomplete

    A measurement of the differential cross section for the reaction γnπp\gamma n \to \pi^{-} p from deuterium

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    We report a measurement of the differential cross section for the γnπp\gamma n \to \pi^- p process from the CLAS detector at Jefferson Lab in Hall B for photon energies between 1.0 and 3.5 GeV and pion center-of-mass (c.m.) angles (θc.m.\theta_{c.m.}) between 50^\circ and 115^\circ. We confirm a previous indication of a broad enhancement around a c.m. energy (s\sqrt{s}) of 2.2 GeV at θc.m.=90\theta_{c.m.}=90^\circ in the scaled differential cross section, s7dσdts^7 {\frac{d\sigma}{dt}}. Our data show the angular dependence of this enhancement as the scaling region is approached in the kinematic region from 70^\circ to 105^\circ.Comment: 6 pages, 3 figures. submitted to PR

    The extraction of ϕN\phi-N total cross section from d(γ,pK+K)nd(\gamma,pK^{+}K^{-})n

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    We report on the first measurement of the differential cross section of ϕ\phi-meson photoproduction for the d(γ,pK+K)nd(\gamma,pK^{+}K^{-})n exclusive reaction channel. The experiment was performed using a \textcolor{black}{tagged-photon} beam and the CEBAF Large Acceptance Spectrometer (CLAS) at Jefferson Lab. A combined analysis using data from the d(γ,pK+K)nd(\gamma,pK^{+}K^{-})n channel and those from a previous publication on coherent ϕ\phi production on the deuteron has been carried out to extract the ϕN\phi-N total cross section, σϕN\sigma_{\phi N}. The extracted ϕN\phi-N total cross section favors a value above 20 mb. This value is larger than the value extracted using vector-meson dominance models for ϕ\phi photoproduction on the proton.Comment: 7 pages 4 figure
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