Generation of Ultra Hard X-Ray Radiation by Compression of Aluminum Wire Arrays

At the S-300 facility (2 MA, 400 kV, 100 ns), the generation of ultra hard X-rays was observed upon magnetic compression of cylindrical nested aluminum arrays with a linear mass of ~350 μg/cm, consisting of aluminum wires with a diameter of 15 μm. At the final phase of compression, a compact pinch i...

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Veröffentlicht in:Plasma physics reports 2024, Vol.50 (1), p.47-54
Hauptverfasser: Korolev, V. D., Bakshaev, Yu. L., Dan’ko, S. A.
Format: Artikel
Sprache:eng
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Zusammenfassung:At the S-300 facility (2 MA, 400 kV, 100 ns), the generation of ultra hard X-rays was observed upon magnetic compression of cylindrical nested aluminum arrays with a linear mass of ~350 μg/cm, consisting of aluminum wires with a diameter of 15 μm. At the final phase of compression, a compact pinch is formed, consisting of a large number of hot spots arranged along the axis. This phase is accompanied by the emission of soft X-rays with a duration of ~10 ns. Simultaneously with the soft X-ray pulses, ultra hard X-rays with an energy exceeding 450 keV were detected. Ultra hard X-rays were measured with scintillation detectors shielded with lead 20–70 mm thick. The main cause of overvoltage on the plasma column appears to be sausage instability.
ISSN:1063-780X
1562-6938
DOI:10.1134/S1063780X2360189X