the uhecr spectrum with hires
DESCRIPTION
The UHECR Spectrum with HiRes. Douglas Bergman Rutgers University ICHEP 2002, Amsterdam 26 July 2002. The HiRes Experiment. Study UHECR with Air Fluorescence Spectrum Composition Sources/Anisotropy Currently has the highest exposure above 10 EeV. HiRes Collaboration. - PowerPoint PPT PresentationTRANSCRIPT
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The UHECR Spectrum with HiResThe UHECR Spectrum with HiRes
Douglas Bergman
Rutgers University
ICHEP 2002, Amsterdam
26 July 2002
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The HiRes ExperimentThe HiRes ExperimentStudy UHECR with Air Fluorescence
– Spectrum– Composition – Sources/Anisotropy
Currently has the highest exposure above 10 EeV
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HiRes CollaborationHiRes CollaborationJ.A. Bellido, R.W. Clay, B.R. Dawson, K.M. Simpson
University of AdelaideJ. Boyer, B. Knapp, W. Lee, E.J. Mannel, M. Seman, C. Song, S. Westerhoff, X. Zhang
Columbia UniversityJ. Amann, C. Hoffman, M. Holzcheiter, L. Marek, G. Sinnis, T.N. Thompson, D. Tupa
Los Alamos National LabratoryJ. Belz, M. Munro, M. Schindel
The University of MontanaG. Martin, J.A.J. Matthews, M. Roberts
University of New MexicoD.R. Bergman, S. Karg, L. MacLynne, L. Perera, S. Schnetzer, G.B. Thomson, A. Zech
Rutgers UniversityN. Manago, M. Sasaki, M. Sasano
University of TokyoT. Abu-Zayyad, G. Archbold, K. Belov, Z. Cao, M. Dalton, J. Girard, R. Gray, W. Hanlon, B. Jones, C.C.H. Jui, D. Kieda, K.
Kim, E.C. Loh, K. Martens, J.N. Matthews, J. Meyer, S.A. Moore, A.N. Moosman, J.R. Mumford, K. Reil, R. Riehle, P. Shen, J. Smith, P. Sokolsky, R.W. Springer, B.T. Stokes, S.B. Thomas, L. Wiencke
University of Utah
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HiRes LocationHiRes Location West Desert of
Utah on Dugway Proving Grounds
100 miles WSW of Salt Lake City
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HiRes SitesHiRes Sites
21 Mirrors360 deg in azimuth
3-17 deg in elevation Sample & Hold DAQ Began observation: June
1997
42 Mirrors360 deg in azimuth
3-33 deg in elevation FADC DAQ Began observation: October
1999
HiRes-IHiRes-I HiRes-IIHiRes-II
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HiRes Mirror & PMT ClusterHiRes Mirror & PMT Cluster
5.1 m2 segmented mirror 256 pixel PMT array and UV filter
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Data Reconstruction & AnalysisData Reconstruction & Analysis Find Shower-Detector
Plane Fit time vs angle to
determine geometry Convert number of
photoelectrons to number of particles in shower
Integrate, using average energy loss, to find energy
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Data/MC Comparison: GeometryData/MC Comparison: Geometry Data/MC comparisons
constrain possible errors in aperture calculation
Note that Psi and Rp are correlated
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Data/MC Comparison: EnergyData/MC Comparison: Energy Energy distributions
also match– Depends on spectrum
and composition in MC– Input spectrum divides
out of aperture
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HiRes SpectraHiRes Spectra Excellent agreement
between HR-1 and HR-2
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Uniform Source Model FitUniform Source Model Fit Fly’s Eye composition
suggests heavy-to-light change in ankle region
Use this to motivate a two component spectrum– Galactic component,
power law with linear factor from composition measurement
– Extragalactic component assuming uniform source density as in Berezinsky et al., hep-ph/0204357
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HiRes vs AGASAHiRes vs AGASA Disagreement
between HiRes and AGASA reduced: – Factor of 2 in flux– A few points over
100 EeV Scaling AGASA
energies down by 20% makes apparent the nice agreement in ankle region
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HiRes vs AGASAHiRes vs AGASA Agreement below
60 EeV and disagreement above quite visible in unmodified flux comparison
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ConclusionConclusion
HiRes has measured the spectrum of Cosmic Rays at the highest energies and with the highest sensitivity at these energies
We observe a feature consistent with what’s expected from the GZK process
HiRes has observed several strong candidates at energies above the the GZK energy