Published March 1976 | Version v1
Report

Response of nuclear emulsions to ionizing radiations

  • 1. Nebraska Univ., Lincoln (USA)

Description

Heavy ion tracks in Ilford K-2 emulsion are simulated with a computer program which makes use of the delta-ray theory of track structure, and the special assumption that the response of this emulsion to gamma-rays is 8-or-more hit. The simulations demonstrate that the emulsions K.5 through K.0 to K-1 are 1-or-more hit detectors, while K-2 is an 8-or-more hit detector. It would appear that emulsions of intermediate hittedness might be produced by an intermediate desensitization, to mimic or match the RBE-LET variations of biological cells, perhaps to produce a ''rem-dosimeter''. In the K-2 emulsion no developable grains are produced by stopping H, He and Li ions. The emulsion has ''threshol-like'' properties, resembling etchable track detectors. It should prove useful in the measurement of high LET dose in a strong low LET background, as for pions or neutrons. Since it can be expected to accumulate and repair ''sub-lethal damage'', to display the ion-kill and gamma-kill inactivation modes, the grain-count and track width regimes, it may serve to model biological effects

Additional details

Publishing Information

Imprint Title
Proceedings. 5. Symposium on microdosimetry. Verbania Pallanza, Italy, 22-26 September 1975
Imprint Pagination
p. 195-216.
Report number
EUR--5452(vol.1)

Conference

Title
5. Symposium on microdosimetry.
Dates
22 Sep 1975.
Place
Verbania Pallanza, Italy.

INIS

Country of Publication
European Commission (EC), Brussels (Belgium)
Country of Input or Organization
European Commission (EC), Brussels (Belgium)
INIS RN
7279352
Subject category
S46: INSTRUMENTATION RELATED TO NUCLEAR SCIENCE AND TECHNOLOGY; S73: NUCLEAR PHYSICS AND RADIATION PHYSICS;
Resource subtype / Literary indicator
Conference
Descriptors DEI
CHARGED PARTICLES; COMPUTER CALCULATIONS; DELTA RAYS; IONIZATION; LET; MICRODOSIMETRY; NUCLEAR EMULSIONS; PARTICLE TRACKS; RESPONSE FUNCTIONS; SECONDARY EMISSION; SIMULATION
Descriptors DEC
DOSIMETRY; EMISSION; ENERGY TRANSFER; FUNCTIONS; RADIATIONS