
doi: 10.2172/1026472
For the fission neutron spectrum measurement, the neutron energy is determined in a time-of-flight experiment by the time difference between the fission event and detection of the neutron. Therefore, the neutron energy resolution is directly determined by the time resolution of both neutron and fission detectors. For the fission detection, the detector needs not only a good timing response but also the tolerance of radiation damage and high {alpha}-decay rate. A parallel-plate avalanche counter (PPAC) has many advantages for the detection of heavy charged particles such as fission fragments. These include fast timing, resistance to radiation damage, and tolerance of high counting rate. A PPAC also can be tuned to be insensitive to particles, which is important for experiments with - emitting actinides. Therefore, a PPAC is an ideal detector for experiments requiring a fast and clean trigger for fission. In the following sections, the description will be given for the design and performance of a new low-mass PPAC for the fission-neutron spectrum measurements at LANL.
Neutrons, Fission, Design, Counting Rates, Performance, Time Resolution, 73 Nuclear Physics And Radiation Physics, Energy Resolution, Lanl, 72 Physics Of Elementary Particles And Fields, Actinides, Detection, Fission Fragments, Charged Particles, Radiations, Fission Neutrons, Tolerance
Neutrons, Fission, Design, Counting Rates, Performance, Time Resolution, 73 Nuclear Physics And Radiation Physics, Energy Resolution, Lanl, 72 Physics Of Elementary Particles And Fields, Actinides, Detection, Fission Fragments, Charged Particles, Radiations, Fission Neutrons, Tolerance
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