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First exploratory survey of poloidal magnetic flux emission from a dense plasma focus

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PHYSICS OF PLASMAS
卷 30, 期 8, 页码 -

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AIP Publishing
DOI: 10.1063/5.0155807

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Studies have found that a significant portion of neutron emission in dense plasma focus is caused by fast deuterons with prominent azimuthal motion. Recent observations have shown long-lasting neutron emission and neutron flux asymmetry in certain plasma focus systems. The presence of azimuthal motion indicates the existence of an electric field and a magnetic field, which also results in poloidal magnetic flux emission from the plasma focus. A diagnostic technique for detecting this emission has recently been proposed and demonstrated successfully.
Studies of neutron emission from a dense plasma focus suggest that a significant fraction of neutron emission in some shots is caused by fast deuterons that have a prominent azimuthal component of motion. Recent examples are observations of long-lasting neutron emission in the side-on direction in PF-1000 and of neutron flux asymmetry (end/side) less than unity in Gemini. Such azimuthal motion of deuterons indicates the presence of an azimuthal electric field that accelerates them and a poloidal magnetic field that keeps them within the zone of acceleration. This in turn must be accompanied by poloidal magnetic flux emission (PMFE) from the plasma focus. Recently, a diagnostic technique for detection of PMFE has been proposed and demonstrated. This paper presents results of its successful replication and the first ever exploratory survey of PMFE emission using the UNU-ICTP plasma focus at the Nanyang Technological University, Singapore.

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