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A LIQUID XENON RADIOISOTOPE CAMERA
Author(s) -
Haim Zaklad,
Stephen E. Derenzo,
Richard A. Muller,
Gérard Smadja,
Robert G. Smits,
Luis W. Alvarez
Publication year - 1972
Publication title -
osti oai (u.s. department of energy office of scientific and technical information)
Language(s) - English
Resource type - Reports
DOI - 10.2172/932964
Subject(s) - xenon , scintillator , photoelectric effect , physics , image resolution , resolution (logic) , scintillation , scintillation counter , gamma camera , liquid scintillation counting , optics , range (aeronautics) , nuclear physics , detector , materials science , chemistry , radiochemistry , computer science , artificial intelligence , composite material
The increasing availability of short lived gamma and positron emitting isotopes, coupled with the importance of dynamical studies and better imaging, has generated the need for an improved {gamma}-ray camera. The authors discuss a new type of {gamma}-ray camera which makes use of electron avalanches in liquid xenon. A configuration currently under development is shown in Figure 1. The successful operation of a liquid xenon proportional counter was recently reported. The liquid xenon camera promises better spatial resolution and higher counting rate than the existing NaI(Tl) scintillation camera. The spatial resolution for {gamma} rays is in principle limited only by the range of photoelectrons in liquid xenon, which is < 0.2 mm for energies < 1 MeV. A counting rate of 10{sup 6} C/s or more appears possible. As a result of the better resolution and high counting rate capability, the definition of the picture is improved. In addition, the high counting rate capability makes possible dynamic studies which were previously unfeasible. Although they expect the energy resolution with liquid xenon to be superior to that of NaI, the preliminary measurements show 17% FWHM for 279 keV {gamma}'s. Improvements are expected by using better geometry and smoother wire

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