Updates to TRACK_TEST and TRACK_VISION Computer Programs

The computer programs TRACK_TEST and TRACK_VISION were previously developed to model profiles and optical appearances of tracks developed in solid-state nuclear track detectors. The programs were based on a track development model that involved the bulk etch rate and the track etch rate or the funct...

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Veröffentlicht in:Polymers 2021-02, Vol.13 (4), p.560
Hauptverfasser: Nikezic, Dragoslav, Stajic, Jelena M, Yu, Kwan Ngok
Format: Artikel
Sprache:eng
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Zusammenfassung:The computer programs TRACK_TEST and TRACK_VISION were previously developed to model profiles and optical appearances of tracks developed in solid-state nuclear track detectors. The programs were based on a track development model that involved the bulk etch rate and the track etch rate or the function (i.e., / ). The present work reported our work to update and modify these two programs. In the revised TRACK_TEST, two new functions were added and enabled. Sample results for the CR-39 detector obtained using the three original and the two new functions were compared. Discrepancies were within ~10% and 1 MeV, respectively. Another major revision of TRACK_TEST was to enable calculations for the Makrofol detector. In the revised TRACK_VISION, the two new functions, as well as the option for the Makrofol detector, were also added. The experimental results on the Makrofol detectors were obtained (irradiated with 3.6-MeV alpha particles under normal incidence and then etched to achieve a removed detector thickness of 30 μm) for comparisons with the modeled results using the revised TRACK_VISION. The track diameters obtained from the experiment and model were 24.7 and 23.2 μm, respectively. Moreover, a bright area in the central parts, together with an outer dark ring, were present in both the simulated and experimental tracks. The track-opening diameters and the general optical appearances of the tracks were in good agreement.
ISSN:2073-4360
2073-4360
DOI:10.3390/polym13040560