Assume that the particular gamma ray is traveling in the direction of
the scintillating liquid in the counter. Remember that the gamma ray is
tiny in comparison with an atom, which is mostly empty space. Therefore,
any one gamma ray probably will miss all the material part of the atoms
in the body of the person being studied. Nor will it collide with
anything as it passes through his clothes and the stainless steel tank.
It also may fail to collide with any of the atoms in the molecules of
scintillation liquid, of course. But let us assume that the one we are
watching does make a hit there. Its total energy will be converted
instantaneously to a flash of many bits or photons of light.
These photons radiate from the collision scene and strike a
light-sensitive surface in one or more of the counter’s photomultiplier
tubes, which have been placed where they can “see” the scintillation
liquid. Energy transformations result, and a tiny pulse of electricity
is originated. These photomultiplier devices are similar to the
equipment in the familiar “electric eye” door openers. As their name
suggests, photomultiplier tubes (see Figures 6 and 9) do more than
merely respond to the light flashes produced in the scintillation
liquid. They also amplify the weak electron disturbances into electrical
pulses to operate meters that record each scintillation and count the
total.
The Geneva counter recorded about 25% of the total gamma rays emitted by
each subject. Since this sample was a constant proportion of the total
body radiation, it could be converted to whole body measurements with
about 97% reliability.
In addition to finding persons with actual body contamination among
those counted at Geneva, the 1955 counter revealed some interesting
sideline information. People who failed to remove radium-dial watches
were soon spotted. And one small boy who had picked up a sample of
uranium ore at a nearby exhibit “jammed” the instrument.
Each of the 25 persons who were found to have above-normal levels of
radiation could recall having worked with radium or some other
radioactive substance at some time in the past.
THE LIQUID SCINTILLATION COUNTER
A visit to this type of counter recalls the first glimmers of scientific
insight that the radiation in the human body could be counted. In the
early 1950s, Frederick Reines and Clyde L. Cowan, two scientists at the
Los Alamos Scientific Laboratory, Los Alamos, New Mexico, built a large
liquid scintillation counter hoping to prove or disprove that neutrinos
really existed. Neutrinos are elusive, uncharged particles with
essentially no mass. They had been predicted in theory nearly 20 years
earlier to explain how beta particles of different energy levels can be
emitted from atoms with apparently identical nuclei.
[Illustration: Figure 5]
Public-domain text, read in full here on John Shaqi.
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