The AMS-02 Anticoincidence Counter. Philip von Doetinchem I. Phys. Inst. B, RWTH Aachen for the AMS-02 Collaboration DPG, Freiburg March 2008

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I. Phys. Inst. B, RWTH Aachen for the AMS-02 Collaboration DPG, Freiburg March 2008

Cosmic Rays in the GeV Range world average SUSY DM KK DM good agreement of data and propagation models, but some unexplained features in the antiparticle/photon fluxes some theories exist to explain a possible excess so far no antimatter was found in cosmic rays. Needs a very good determination between Helium and Antihelium Anticounter DPG, March 2008 p. 2

AMS02 Overview Goals of AMS02: precise spectroscopy of cosmic rays without interactions in the atmosphere on the ISS measurement/bounds on antimatter indirect dark matter search Subdetectors: Transition Radiation Detector (TRD) classify particles by =E/m Time of Flight (ToF) trigger, velocity, de/dx Tracker track reconstruction, momentum, de/dx Anti-Coincidence Counter (ACC) event selection next slide Ring Image Cherenkov Detector (RICH) precise velocity mesaurement Electromagnetic Calorimeter (ECal) shower shape and energy determination DPG, March 2008 p. 3

ACC System small ACC inefficiency needed (<10-4) for measurement of antimatter with very clean single tracks reduce trigger rate e.g. south atlantic anomaly Coupling Charged particle PMT Clear fiber Coupling PMT WLS fiber WLS fiber Clear fiber Scintillator DPG, March 2008 p. 4

Important Events for the ACC Rejection of internal events ACC Rejection of external events ACC DPG, March 2008 p. 5

Calculation of Photo Electron Number QC Q LED cosmics LED measurement of MOP with cosmics calibration with LEDs implemented in panels AMS-01 average 20 p.e. with 20% more material calculation of photo electron number N pe = Q C Q LED σ 2LED DPG, March 2008 p. 6

ACC Hardware Parts 16 Bicron BC414 Scintillator Panels with inlaying Kuraray wave length shifting fibers 16 Y-shaped Toray clear fiber cables 16 Hamamatsu fine mesh PMTs PMT side panel side DPG, March 2008 p. 7

Complete System Test Test of complete chain: panel + clear fiber + PMT show good results! DPG, March 2008 p. 8

Space Qualification - PMTs TVT tank PMTs PMTs random frequency spectrum: 3.3g Temperature requirements: operative: -30 - +45 C non-operative: -35 - +50 C PMTs did not change within 5% after Space Qualification DPG, March 2008 p. 9

Beamtest Inefficiency Measurement Highest ADC counts from both PMTs on one panel for each event slot 2.6 mm from slot 14.3 mm from slot central DPG, March 2008 p. 10

Isotropic Particle Distribution in Panels -1-2 -3-4 -5-6 beamtest: straight infall to panel space: isotropic particle distribution leads to longer path lengths in scinitillator DPG, March 2008 p. 11

Inefficiency of ACC Estimated mean inefficiency of one complete ACC panel with complete system test results and isotropic particle distribution (20% effect), but with testbeam elec.: 5.1 10-5 DPG, March 2008 p. 12

Flight Electronics 4 3 2 1 DPG, March 2008 p. 13

Flight Electronics good resolution for small charges small pedestal width small inefficiency rate of fake hits caused by PMTs vs. used cut: ca. 10-4 DPG, March 2008 p. 14

Preintegration successful preintegration: 99 ± 8 % LED test comparison (after/before) DPG, March 2008 p. 15

Conclusion ACC system for AMS-02 is ready! scintillators, clear fibers, PMTs: good flight electronics: good preintegration done! flight integration May/June more studies ineff. along panel vary incidence angle DPG, March 2008 p. 16