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Radiation Protection Dosimetry | 2010

Personal dose equivalent conversion coefficients for neutron fluence over the energy range of 20–250 MeV

Richard H. Olsher; Thomas D. McLean; Alan L. Justus; R. T. Devine; M. S. Gadd

Monte Carlo simulations were performed to extend existing neutron personal dose equivalent fluence-to-dose conversion coefficients to an energy of 250 MeV. Presently, conversion coefficients, H(p,slab)(10,alpha)/Phi, are given by ICRP-74 and ICRU-57 for a range of angles of radiation incidence (alpha = 0, 15, 30, 45, 60 and 75 degrees ) in the energy range from thermal to 20 MeV. Standard practice has been to base operational dose quantity calculations <20 MeV on the kerma approximation, which assumes that charged particle secondaries are locally deposited, or at least that charged particle equilibrium exists within the tally cell volume. However, with increasing neutron energy the kerma approximation may no longer be valid for some energetic secondaries such as protons. The Los Alamos Monte Carlo radiation transport code MCNPX was used for all absorbed dose calculations. Transport models and collision-based energy deposition tallies were used for neutron energies >20 MeV. Both light and heavy ions (HIs) (carbon, nitrogen and oxygen recoil nuclei) were transported down to a lower energy limit (1 keV for light ions and 5 MeV for HIs). Track energy below the limit was assumed to be locally deposited. For neutron tracks <20 MeV, kerma factors were used to obtain absorbed dose. Results are presented for a discrete set of angles of incidence on an ICRU tissue slab phantom.


Health Physics | 2000

Wendi: An improved neutron rem meter

Richard H. Olsher; H.H. Hsu; Anthony Beverding; Jeffrey H. Kleck; William H. Casson; Dennis G. Vasilik; R. T. Devine


Radiation Protection Dosimetry | 2006

Neutron spectrometry using CR-39 track etch detectors

Gary W. Phillips; Jerrette E. Spann; James S. Bogard; Tuan Vo-Dinh; Dimitris Emfietzoglou; R. T. Devine; M. Moscovitch


Radiation Protection Dosimetry | 2004

Development of a portable high-energy neutron spectrometer

Thomas D. McLean; Richard H. Olsher; R. T. Devine


Radiation Protection Dosimetry | 2007

High-energy response of passive dosemeters in use at LANL.

Richard H. Olsher; Thomas D. McLean; Michael W. Mallett; Leonard L. Romero; R. T. Devine; Jeffrey M. Hoffman


Radiation Protection Dosimetry | 2007

CHELSI: a portable neutron spectrometer for the 20–800 MeV region

Thomas D. McLean; Richard H. Olsher; Leonard L. Romero; L. H. Miles; R. T. Devine; A. Fallu-Labruyere; P. Grudberg


Radiation Protection Dosimetry | 2007

Characterization of neutron reference fields at US department of energy calibration fields

Richard H. Olsher; Thomas D. McLean; Michael W. Mallett; David T. Seagraves; M. S. Gadd; Robin L. Markham; R. O. Murphy; R. T. Devine


Radiation Protection Dosimetry | 2004

Computation of cross sections and dose conversion factors for criticality accident dosimetry

R. T. Devine


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2002

Evaluation of spectrum measurement devices for operational use

R. T. Devine; Leonard L. Romero; Devin W. Gray; David T. Seagraves; Richard H. Olsher; Jeff P Johnson


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2006

CHELSI : Recent developments in the design and performance of a high-energy neutron spectrometer

Thomas D. McLean; Richard H. Olsher; R. T. Devine; Leonard L. Romero; A. Fallu-Labruyere; Peter M. Grudberg; Hui Tan; Yunxian Chu

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Richard H. Olsher

Los Alamos National Laboratory

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Thomas D. McLean

Los Alamos National Laboratory

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Leonard L. Romero

Los Alamos National Laboratory

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David T. Seagraves

Los Alamos National Laboratory

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Michael W. Mallett

Los Alamos National Laboratory

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Jeffrey M. Hoffman

Los Alamos National Laboratory

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M. S. Gadd

Los Alamos National Laboratory

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R. O. Murphy

Los Alamos National Laboratory

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Alan L. Justus

Los Alamos National Laboratory

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