Anomalous resistance and its effect on neutron yield production in Mather type dense plasma focus devices

Fusion energy as a source of sustainable energy is a topic of much interest. The creation of fusion energy and neutron yield during pinching is studied in this paper with the aid of dense plasma focus machine and the Lee codes. Three different dense plasma machines namely PF 400, DPF 2.2 and India&#...

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Main Authors: A., Singh, S.S., Heoh, L., Sing
Format: Article
Published: 2022
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Online Access:http://eprints.intimal.edu.my/1732/
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author A., Singh
S.S., Heoh
L., Sing
author_facet A., Singh
S.S., Heoh
L., Sing
author_sort A., Singh
building INTI Institutional Repository
collection Online Access
description Fusion energy as a source of sustainable energy is a topic of much interest. The creation of fusion energy and neutron yield during pinching is studied in this paper with the aid of dense plasma focus machine and the Lee codes. Three different dense plasma machines namely PF 400, DPF 2.2 and India's- Assam plasma focus machine is studied by analysing the current waveforms. It was found that in machines with regular current dip, most of the fusion energy and neutron yield is released during the pinching process, whereas those with extended dip, the remnant inductive energy transferred to the instabilities releases extra neutrons and energy from the magnetic field after the normal pinch.
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publishDate 2022
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spelling intimal-17322023-03-27T06:49:17Z http://eprints.intimal.edu.my/1732/ Anomalous resistance and its effect on neutron yield production in Mather type dense plasma focus devices A., Singh S.S., Heoh L., Sing QC Physics T Technology (General) Fusion energy as a source of sustainable energy is a topic of much interest. The creation of fusion energy and neutron yield during pinching is studied in this paper with the aid of dense plasma focus machine and the Lee codes. Three different dense plasma machines namely PF 400, DPF 2.2 and India's- Assam plasma focus machine is studied by analysing the current waveforms. It was found that in machines with regular current dip, most of the fusion energy and neutron yield is released during the pinching process, whereas those with extended dip, the remnant inductive energy transferred to the instabilities releases extra neutrons and energy from the magnetic field after the normal pinch. 2022 Article PeerReviewed A., Singh and S.S., Heoh and L., Sing (2022) Anomalous resistance and its effect on neutron yield production in Mather type dense plasma focus devices. Engineering Technology International Conference (ETIC 2022), 2022 (CP808). pp. 298-303. ISSN 978-1-83953-782-0 https://doi.org/10.1049/icp.2022.2628
spellingShingle QC Physics
T Technology (General)
A., Singh
S.S., Heoh
L., Sing
Anomalous resistance and its effect on neutron yield production in Mather type dense plasma focus devices
title Anomalous resistance and its effect on neutron yield production in Mather type dense plasma focus devices
title_full Anomalous resistance and its effect on neutron yield production in Mather type dense plasma focus devices
title_fullStr Anomalous resistance and its effect on neutron yield production in Mather type dense plasma focus devices
title_full_unstemmed Anomalous resistance and its effect on neutron yield production in Mather type dense plasma focus devices
title_short Anomalous resistance and its effect on neutron yield production in Mather type dense plasma focus devices
title_sort anomalous resistance and its effect on neutron yield production in mather type dense plasma focus devices
topic QC Physics
T Technology (General)
url http://eprints.intimal.edu.my/1732/
http://eprints.intimal.edu.my/1732/