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Efficient alpha particle detection by CR-39 applying 50 Hz-HV electrochemical etching method
Institution:1. Department of Oncology and Radiotherapy, University Clinical Center in Gdansk, Debinki 7, 80-952, Gdansk, Poland;2. Department of Physics and Biophysics, Medical University of Gdansk, Debinki 1, 80-211, Gdansk, Poland;3. Department of Oral and Maxillofacial Surgery, University Clinical Center in Gdansk, Debinki 7, 80-952, Gdansk, Poland;4. Department of Pediatric Dentistry, Medical University of Gdansk, Orzeszkowej 18, 80-208, Gdansk, Poland;1. Medical Physics Department, Holycross Cancer Centre, Artwiskiego 3, 25-734, Kielce, Poland;2. Medical Physics Department, Cancer Center-Institute of Oncology, Roentgena 5, 02-781, Warsaw, Poland
Abstract:Alpha particles can be detected by CR-39 by applying either chemical etching (CE), electrochemical etching (ECE), or combined pre-etching and ECE usually through a multi-step HF-HV ECE process at temperatures much higher than room temperature. By applying pre-etching, characteristics responses of fast-neutron-induced recoil tracks in CR-39 by HF-HV ECE versus KOH normality (N) have shown two high-sensitivity peaks around 5–6 and 15–16 N and a large-diameter peak with a minimum sensitivity around 10–11 N at 25°C. On the other hand, 50 Hz-HV ECE method recently advanced in our laboratory detects alpha particles with high efficiency and broad registration energy range with small ECE tracks in polycarbonate (PC) detectors. By taking advantage of the CR-39 sensitivity to alpha particles, efficacy of 50 Hz-HV ECE method and CR-39 exotic responses under different KOH normalities, detection characteristics of 0.8 MeV alpha particle tracks were studied in 500 μm CR-39 for different fluences, ECE duration and KOH normality. Alpha registration efficiency increased as ECE duration increased to 90 ± 2% after 6–8 h beyond which plateaus are reached. Alpha track density versus fluence is linear up to 106 tracks cm−2. The efficiency and mean track diameter versus alpha fluence up to 106 alphas cm−2 decrease as the fluence increases. Background track density and minimum detection limit are linear functions of ECE duration and increase as normality increases. The CR-39 processed for the first time in this study by 50 Hz-HV ECE method proved to provide a simple, efficient and practical alpha detection method at room temperature.
Keywords:Alpha particle  CR-39  Electrochemical etching  50 Hz-HV  KOH normality  Efficiency
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