2021
DOI: 10.1088/1748-0221/16/03/p03008
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Corryvreckan: a modular 4D track reconstruction and analysis software for test beam data

Abstract: Corryvreckan is a versatile, highly configurable software with a modular structure designed to reconstruct and analyse test beam and laboratory data. It caters to the needs of the test beam community by providing a flexible offline event building facility to combine detectors with different readout schemes, with or without trigger information, and includes the possibility to correlate data from multiple devices based on timestamps. Hit timing information, available with high precision from an increasing numbe… Show more

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Cited by 42 publications
(29 citation statements)
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“…Data were processed in the Corryvreckan test beam reconstruction software framework [10] by fitting straight lines to clusters found in the six reference planes and interpolating the tracks to the DUT. Event and track quality selection criteria were applied to ensure a clean data sample: precisely one track per event, good straightness (𝜒 2 ∕NDF < 3) of the track, and track points on each reference plane.…”
Section: Analysis Tools and Methodsmentioning
confidence: 99%
“…Data were processed in the Corryvreckan test beam reconstruction software framework [10] by fitting straight lines to clusters found in the six reference planes and interpolating the tracks to the DUT. Event and track quality selection criteria were applied to ensure a clean data sample: precisely one track per event, good straightness (𝜒 2 ∕NDF < 3) of the track, and track points on each reference plane.…”
Section: Analysis Tools and Methodsmentioning
confidence: 99%
“…The software framework Corryvreckan [17,18] is used to perform offline reconstruction and analysis of the testbeam data. Individual events are defined by CLICTD readout frames.…”
Section: Reconstruction and Analysismentioning
confidence: 99%
“…Automated data taking is realized via a full integration into EUDAQ2 [10]. The recorded data is analyzed with Corryvreckan [11]: Around each TLU trigger, a time window with ±10 µs is created and all TelePix hits with matching timestamps are added to the frame. Subsequently, clustering in space (and time for the TelePix) is performed.…”
Section: Test Beam Characterizationmentioning
confidence: 99%