3 m

3
3 m µ e ± , knee 2 nd knee ankle toe 1 Zbigniew Szadkowski, University of Łódź Real Time Conference, Lisbon, 2010 1. Low energy (10 17 – 10 18.5 eV) enhancement for the Pierre Auger Observatory, 2. Detection of muon component 3m underground AMIGA Auger

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Trigger, data flow and the synchronization between the Auger surface detector and the AMIGA underground muon counters. 3 m. knee. 2 nd knee. ankle. toe. e ± , . AMIGA. Auger. µ. Low energy (10 17 – 10 1 8.5 eV) enhancement for the Pierre Auger Observatory , - PowerPoint PPT Presentation

Transcript of 3 m

Page 1: 3 m

3 mµ

e±,

knee 2nd knee ankle toe

1Zbigniew Szadkowski, University of ŁódźReal Time Conference, Lisbon, 2010

1. Low energy (1017 – 1018.5 eV) enhancement for the Pierre Auger Observatory,

2. Detection of muon component 3m underground

AMIGA Auger

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Real Time Conference, Lisbon, 2010 2Zbigniew Szadkowski, University of Łódź

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LVDS communication between NIOST1 – trigger

+ FEBTS

4th generation of the Front-End CycloneIII™ FPGA

CycloneIII™ NIOS Development KitPoster PDAQ20Zbigniew Szadkowski,

University of Łódź

1. Higher sampling underground: 80 -> 320 MHz

2. Higher sampling on the surface: 40 -> 100 MHz

3. Two segments only: higher reliability

4. NIOS processors both underground and on the surface: no problem of obsolescence