5 research outputs found

    Measurement of the cross section for inclusive isolated-photon production in pp collisions at √s=13TeV using the ATLAS detector

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    Inclusive isolated-photon production in pp collisions at a centre-of-mass energy of 13TeVis studied with the ATLAS detector at the LHC using a data set with an integrated luminosity of 3.2fb−1. The cross section is measured as a function of the photon transverse energy above 125GeVin different regions of photon pseudorapidity. Next-to-leading-order perturbative QCD and Monte Carlo event-generator predictions are compared to the cross-section measurements and provide an adequate description of the data

    Measurement of the total cross section from elastic scattering in <i>pp</i> collisions at √<i>s</i>=8 TeV with the ATLAS detector

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    A measurement of the total pppp cross section at the LHC at s=8\sqrt{s}=8 TeV is presented. An integrated luminosity of 500500 μ\mub1^{-1} was accumulated in a special run with high-β\beta^{\star} beam optics to measure the differential elastic cross section as a function of the Mandelstam momentum transfer variable tt. The measurement is performed with the ALFA sub-detector of ATLAS. Using a fit to the differential elastic cross section in the t-t range from 0.0140.014 GeV2^2 to 0.10.1 GeV2^2 to extrapolate t0t\rightarrow 0, the total cross section, σtot(ppX)\sigma_{\mathrm{tot}}(pp\rightarrow X), is measured via the optical theorem to be: σtot(ppX)=96.07  ±0.18  (stat.)±0.85  (exp.)±0.31  (extr.)  mb  ,\sigma_{\mathrm{tot}}(pp\rightarrow X) = {96.07} \; \pm 0.18 \; ({{stat.}}) \pm 0.85 \; ({{exp.}}) \pm 0.31 \; ({extr.}) \; {mb} \;, where the first error is statistical, the second accounts for all experimental systematic uncertainties and the last is related to uncertainties in the extrapolation t0t\rightarrow 0. In addition, the slope of the exponential function describing the elastic cross section at small tt is determined to be B=19.74±0.05  (stat.)±0.23  (syst.)  GeV2B = 19.74 \pm 0.05 \; ({{stat.}}) \pm 0.23 \; ({{syst.}}) \; {GeV}^{-2}

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