2,310 research outputs found

    Letter to the Editor

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    Identification of photons in double beta-decay experiments using segmented germanium detectors - studies with a GERDA Phase II prototype detector

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    The sensitivity of experiments searching for neutrinoless double beta-decay of germanium was so far limited by the background induced by external gamma-radiation. Segmented germanium detectors can be used to identify photons and thus reduce this background component. The GERmanium Detector Array, GERDA, will use highly segmented germanium detectors in its second phase. The identification of photonic events is investigated using a prototype detector. The results are compared with Monte Carlo data.Comment: 20 pages, 7 figures, to be submitted to NIM-

    Investigation into the limits of perturbation theory at low Q^2 using HERA deep inelastic scattering data

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    A phenomenological study of the final combined HERA data on inclusive deep inelastic scattering (DIS) has been performed. The data are presented and investigated for a kinematic range extending from values of the four-momentum transfer, Q2Q^2, above 104^4 GeV2^2 down to the lowest values observable at HERA of Q2Q^2 = 0.045 GeV2^2 and Bjorken xx, xBjx_{\rm Bj} = 6 \cdot 107^{-7}. The data are well described by fits based on perturbative quantum chromodynamics (QCD) using collinear factorisation and evolution of the parton densities encompassed in the DGLAP formalism from the highest Q2Q^2 down to Q2Q^2 of a few GeV2^2. The Regge formalism can describe the data up to Q2Q^2 \approx 0.65 GeV2^2. The complete data set can be described by a new fit using the ALLM parameterisation. The region between the Regge and the perturbative QCD regimes is of particular interest.Comment: 38 pages, 13 figure

    Characterization of the first true coaxial 18-fold segmented n-type prototype detector for the GERDA project

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    The first true coaxial 18-fold segmented n-type HPGe prototype detector produced by Canberra-France for the GERDA neutrinoless double beta-decay project was tested both at Canberra-France and at the Max-Planck-Institut fuer Physik in Munich. The main characteristics of the detector are given and measurements concerning detector properties are described. A novel method to establish contacts between the crystal and a Kapton cable is presented.Comment: 21 pages, 16 Figures, to be submitted to NIM

    Multiplicities for LHC Nuclear Collisions Using HERA Structure Functions

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    We compute in QCD perturbation theory the transverse energy carried by gluons, quarks and antiquarks with pTp02p_T\ge p_0\approx 2 GeV in Pb+Pb collisions at s=5500\sqrt{s}=5500 AAGeV by using structure functions compatible with the small-xx increase observed at HERA. This gives a perturbative estimate for the energy and entropy density of the bulk system at times τ0.1\tau\sim 0.1 fm. The predicted initial gluon entropy density gives a lower limit of about 2200...3400 for the final charged multiplicity. Sources of further entropy increase are discussed.Comment: HU-TFT-94-6, 7 pages, 3 PostScript figures included in the end of the tex-fil

    Implications of Scaling Violations of F2 at HERA for Perturbative QCD

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    We critically examine the QCD predictions for the Q2Q^2 dependence of the electron-proton deep-inelastic structure function F2(x,Q2)F_2(x,Q^2) in the small xx region, which is being probed at HERA. The standard results based on next-to-leading order Altarelli-Parisi evolution are compared with those that follow from the BFKL equation, which corresponds to the resummation of the leading log(1/x)(1/x) terms. The effects of parton screening are also quantified. The theoretical predictions are confronted with each other, and with existing data from HERA. (3 Postscript figures included).Comment: (8 Latex Pages) IFJ 1653/P

    Diffractive Meson Production and the Quark-Pomeron Coupling

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    Diffractive meson production at HERA offers interesting possibilities to investigate diffractive processes and thus to learn something about the properties of the pomeron. The most succesful phenomenological description of the pomeron so far assumes it to couple like a C=+1C = +1 isoscalar photon to single quarks. This coupling leads, however, to problems for exclusive diffractive reactions. We propose a new phenomenological pomeron vertex, which leads to very good fits to the known data, but avoids the problems of the old vertex.Comment: 20 pages, latex with uuencoded postscript, revised versio
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