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Performances of the KM2A prototype array J.Liu for the LHAASO Collaboration Institute of High Energy Physics, CAS 32nd International Cosmic Ray Conference, Beijing, China, 11-18 August 2011
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Outline: 1. Introduction 2. Experiment setup 3. Performances of the KM2A prototype array 4. Conclusion
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1. Introduction The LHAASO project focuses on the study of subTeV-1Pev gamma ray astronomy and 5Tev-1Eev cosmic ray physics by using a compound detector array distributed in one square kilometer
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2. Experiment setup Electromagnetic particle Detector 1.2m 1m
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KM2A prototype array in Beijing
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Red stars show the location of 42 cassettes of the plastic scintillation in ARGO array
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KM2A prototype array overlaps with the ARGO array, so we can match event one by one. (above 95% event of km2a prototype array can match to ARGO’s) Fig. An example shower front observed by ARGO-YBJ (blue) and the prototype array (red).
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Current status Data taken since October 2010 Trigger rate about 49Hz 1.5 GB/day transferred to IHEP
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3. Performances of the KM2A prototype array 1) ADC count of single muon; 2) Single channel rate; 3) Trigger rate; 4) Shower direction reconstruction; 5) Angular resolution; 6) Long term stability;
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MPV amplitude of each ED in case of single particle ADC count 1) ADC count of single particle
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Single channel rate vs. threshold value 2.5 3.75 5 6.25 7.5 8.75 8 threshold value (mv) Hz The trigger threshold 2) Single channel rate
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The measured trigger rates (blue) vs. event trigger threshold is consistent with that estimated by the ARGO-YBJ data (red). dt distribution under the trigger condition ( 5 cassettes “fired” out of 42 cassettes ) event rate is about 49Hz 3) Trigger rate
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4) Shower direction reconstruction Zenith (degree) Azimuth (degree)
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Fig. Space angles distribution between the direction reconstructed with ARGO data (conic fit) and the one with prototype array data (plane fit) Events chosen: the shower reconstructed core location of 10 m to the center of the array 5) Pointing and Angular resolution
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Result Km2a nhit ARGO nhitShower Energy Angular resolution (in degree) >5190413Tev2.0 >10346635Tev1.4 >15503950Tev1.2 >206610100Tev1.1 >258176140Tev1.0 >309684180Tev0.9
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The charge of single muon vs. time (MJD) 6) Long term stability The event rate vs. time (MJD)
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4. Conclusion KM2A prototype array has been in stable operation since October 2010 The performances of KM2A prototype array meet design requirements.
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Thank you! We would like to express their gratitude to the ARGO-YBJ collaboration for the powerful support.
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