Search PubMed⌕ Search

PubMed · 111021

Neutron spectra.

Abstract

The source did not provide an abstract. Follow the original record for more information.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

F M Waterman, F T Kuchnir, L S Skaggs, R T Kouzes, W H Moore. Neutron spectra.. https://doi.org/10.1118/1.594529

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Inelastic neutron scattering studies on low frequency vibrations of pentachlorophenol.

Inelastic neutron scattering (INS) and DFT theoretical studies on pentachlorophenol (PCP) and d-PCP were performed. IR and Raman spectra were also measured for comparison. A special attention was focused on low frequency modes in INS spectra, which provide information about modes into which the co-ordinates of the hydrogen and chlorine atoms are involved. The intensity of respective INS bands is discussed based on the cross-sections of nuclei and calculated relative amplitudes of vibrations. The appearance of overtones and summation frequencies in INS spectra was evidenced.

Neutrons↗

The impact of ICRP/ICRU quantities on high energy neutron dosimetry: a review.

Unlike other fields of toxicology, radiation protection has a dual system of quantities, one set for assessment and the derivation of authorised limits and another set for monitoring radiation performance and compliance. Neutrons are an important or dominant constituent of the radiation field around high energy accelerators and the evolution of the radiation protection quantities used to measure neutrons is described. In 1990 ICRP introduced a new quantity, the effective dose. E. with which to express its protection limits. E represented a radical departure from previous advice of the Commission, particularly in the manner by which it weighted the absorbed dose deposited by high LET radiations. This advice had profound consequences for neutron dosimetry. Over the past decade analyses have revealed logical flaws and inconsistencies in the definition of effective dose. These are briefly discussed with most emphasis being placed on inconsistencies in radiation weighting. Suggestions are made with a view to resolving these inconsistencies.

Neutrons↗

Comparison of superheated drop detector with phosphorous pentoxide powder for the detection of neutrons in 18 MV x rays.

Neutron dose equivalent measurements were performed in and around an 18 MV x-ray beam using superheated drop detectors (SDD) and phosphorous pentoxide (P2O5) powder. The neutron dose equivalent profiles for various field sizes of 10 X 10 cm2, 20 X 20 cm2, and 30 X 30 cm2 were measured. The results measured with the P2O5 were checked for any gross systematic errors by comparing with the published results computed by using Monte Carlo calculations. A comparison was then made between the neutron dose equivalent profiles measured with the P2O5 and the SDD. The results of this comparison show that the neutron dose equivalents measured with the two types of detectors agree with each other for measurements about 20 cm away from the beam edges. However, in and near the beam edges the SDD measurements are upto 50% less than the neutron dose equivalents measured using P2O5 for the 18 MV x-ray beam.

Neutrons↗