Measurement and analysis of the 241Am(n,γ ) cross section with liquid scintillator detectors using time-of-flight spectroscopy at the n_TOF facility at CERN

The 241Am(n,γ ) cross section has been measured at the n_TOF facility at CERN using deuterated benzene liquid scintillators, commonly known as C6D6 detectors, and time-of-flight spectrometry. The results in the resolved resonance range bring new constraints to evaluations below 150 eV, and the ene...

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Egile nagusia: Meaze, AKM Moinul Haque
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Argitaratua: PHYSICAL REVIEW C 2025
Sarrera elektronikoa:https://repository.auw.edu.bd/handle/123456789/929
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author Meaze, AKM Moinul Haque
author_facet Meaze, AKM Moinul Haque
author_sort Meaze, AKM Moinul Haque
collection institutional Repository
description The 241Am(n,γ ) cross section has been measured at the n_TOF facility at CERN using deuterated benzene liquid scintillators, commonly known as C6D6 detectors, and time-of-flight spectrometry. The results in the resolved resonance range bring new constraints to evaluations below 150 eV, and the energy upper limit was extended from 150 to 320 eV with a total of 172 new resonances not present in current evaluations. The thermal capture cross section was found to be σth = 678 ± 68 b, which is in good agreement with evaluations and most previous measurements. The capture cross section in the unresolved resonance region was extracted in the remaining energy range up to 150 keV, and found to be larger than current evaluations and previous measurements.
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spelling 123456789-9292026-02-18T06:15:10Z Measurement and analysis of the 241Am(n,γ ) cross section with liquid scintillator detectors using time-of-flight spectroscopy at the n_TOF facility at CERN Meaze, AKM Moinul Haque The 241Am(n,γ ) cross section has been measured at the n_TOF facility at CERN using deuterated benzene liquid scintillators, commonly known as C6D6 detectors, and time-of-flight spectrometry. The results in the resolved resonance range bring new constraints to evaluations below 150 eV, and the energy upper limit was extended from 150 to 320 eV with a total of 172 new resonances not present in current evaluations. The thermal capture cross section was found to be σth = 678 ± 68 b, which is in good agreement with evaluations and most previous measurements. The capture cross section in the unresolved resonance region was extracted in the remaining energy range up to 150 keV, and found to be larger than current evaluations and previous measurements. 2025-08-04T11:45:40Z 2025-08-04T11:45:40Z 2014 Article https://repository.auw.edu.bd/handle/123456789/929 en application/pdf PHYSICAL REVIEW C
spellingShingle Meaze, AKM Moinul Haque
Measurement and analysis of the 241Am(n,γ ) cross section with liquid scintillator detectors using time-of-flight spectroscopy at the n_TOF facility at CERN
title Measurement and analysis of the 241Am(n,γ ) cross section with liquid scintillator detectors using time-of-flight spectroscopy at the n_TOF facility at CERN
title_full Measurement and analysis of the 241Am(n,γ ) cross section with liquid scintillator detectors using time-of-flight spectroscopy at the n_TOF facility at CERN
title_fullStr Measurement and analysis of the 241Am(n,γ ) cross section with liquid scintillator detectors using time-of-flight spectroscopy at the n_TOF facility at CERN
title_full_unstemmed Measurement and analysis of the 241Am(n,γ ) cross section with liquid scintillator detectors using time-of-flight spectroscopy at the n_TOF facility at CERN
title_short Measurement and analysis of the 241Am(n,γ ) cross section with liquid scintillator detectors using time-of-flight spectroscopy at the n_TOF facility at CERN
title_sort measurement and analysis of the 241am n γ cross section with liquid scintillator detectors using time of flight spectroscopy at the n tof facility at cern
url https://repository.auw.edu.bd/handle/123456789/929
work_keys_str_mv AT meazeakmmoinulhaque measurementandanalysisofthe241amngcrosssectionwithliquidscintillatordetectorsusingtimeofflightspectroscopyatthentoffacilityatcern