Time calibration studies for the Timepix3 hybrid pixel detector in electron microscopy
Yves Auad, Jassem Baaboura, Jean-Denis Blazit, Marcel Tenc\'e, and Odile St\'ephan, Mathieu Kociak, Luiz H. G. Tizei

TL;DR
This study calibrates and corrects the temporal response of the Timepix3 detector in electron microscopy, achieving a temporal resolution of about 1.37 ns and analyzing factors affecting its timing accuracy.
Contribution
It introduces calibration procedures and correction methods for Timepix3's temporal data, enhancing its accuracy in electron microscopy applications.
Findings
Achieved an average temporal resolution of 1.37 ns across the detector.
Characterized charge dynamics using cosmic ray tracks.
Estimated timing uncertainty varies from 0.8 ns to 8.8 ns depending on electron energy.
Abstract
Direct electron detection is currently revolutionizing many fields of electron microscopy due to its lower noise, its reduced point-spread function, and its increased quantum efficiency. More specifically to this work, Timepix3 is a hybrid-pixel direct electron detector capable of outputting temporal information of individual hits in its pixel array. Its architecture results in a data-driven detector, also called event-based, in which individual hits trigger the data off the chip for readout as fast as possible. The presence of a pixel threshold value results in an almost readout-noise-free detector while also defining the hit time of arrival and the time the signal stays over the pixel threshold. In this work, we have performed various experiments to calibrate and correct the Timepix3 temporal information, specifically in the context of electron microscopy. These include the energy…
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Taxonomy
TopicsParticle Detector Development and Performance · CCD and CMOS Imaging Sensors · Electron and X-Ray Spectroscopy Techniques
