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Lightning detection at the Pierre-Auger-Observatory / vorgelegt von Lukas Niemietz aus Bonn. Wuppertal, 08. Juni 2017
Content
Introduction
Cosmic Rays
Energy Spectrum
Chemical Composition
Acceleration and Possible Sources
Bottom-Up Models
Top-Down Models
Propagation
Anisotropy
Extensive Air Showers
Shower Development
Shower Components
Observation Methods
Surface Detectors
Fluorescence Detectors
Radio Detection
Additional Detection Techniques
The Pierre-Auger-Observatory
Fluorescence Detector
Surface Detector
Auger Engineering Radio Array
Offline Framework
Lightnings
General Information
Detection Techniques
Relativistic Runaway Electron Avalanche
Radio Emission
Transient Luminous Events
Lightning Detection Devices
E-Field Mill
Detection Mechanism
Lightning Detection System
Data Acquisition
Sampling Rate Measurement
Timing
GPS-Extension for Boltek StormTracker
Dead Time
Integration in the Auger Monitoring Page
AERA-Stations
Implementation of Cross-Correlation in Offline
Data Analysis
SD Lightning Flag
Accuracy of Lightning Position
Lightning Data Comparison
CheckUp-System in Germany
Number of Triggers
Direction
Distance
Cable Length
SD Lightning Flag
Timing
Reconstruction Position
Uptime and Detection Rate
World Wide Lightning Location Network
Timing
Uptime and Detection Efficiency
Reconstruction Position
E-Field Mill
Comparison of the E-Field Mills to each other
E-Field Value
IsTS-Flag Correlation
Comparison to SD Lighting Flag
Comparison to Lightning Detection System
SD Lightning Trigger
Outlook
Additional Lightning Information
Polarisation
Lightning Strength
Interpolation
Elves
SD-Rings
Summary
Appendix
MySQL Table Structure