The study of pinch regimes based on radiation-enhanced compression and anomalous resistivity phenomena and their effects on hard x-ray emission in a Mather type dense plasma focus device (SABALAN2)

In this study, by using argon and nitrogen as the filling gases in a Mather type dense plasma focus device at different values of pressure and charging voltage, two different kinds of pinch regimes were observed for each of the gases. The physics of the pinch regimes could be explained by using the...

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Main Authors: Piriaei, D., Mahabadi, T.D., Javadi, S., Ghoranneviss, M., Saw, S.H., Lee, S.
Format: Article
Published: 2015
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Online Access:http://eprints.um.edu.my/16422/
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Institution: Universiti Malaya
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spelling my.um.eprints.164222016-09-14T02:00:40Z http://eprints.um.edu.my/16422/ The study of pinch regimes based on radiation-enhanced compression and anomalous resistivity phenomena and their effects on hard x-ray emission in a Mather type dense plasma focus device (SABALAN2) Piriaei, D. Mahabadi, T.D. Javadi, S. Ghoranneviss, M. Saw, S.H. Lee, S. QC Physics In this study, by using argon and nitrogen as the filling gases in a Mather type dense plasma focus device at different values of pressure and charging voltage, two different kinds of pinch regimes were observed for each of the gases. The physics of the pinch regimes could be explained by using the two versions of the Lee's computational model which predicted each of the scenarios and clarified their differences between the two gases according to the radiation-enhanced compression and, additionally, predicted the pinch regimes through the anomalous resistivity effect during the pinch time. This was accomplished through the fitting process (simulation) on the current signal. Moreover, the characteristic amplitude and time scales of the anomalous resistances were obtained. The correlations between the features of the plasma current dip and the emitted hard x-ray pulses were observed. The starting time, intensity, duration, and the multiple or single feature of the emitted hard x-ray strongly correlated to the same respective features of the current dip. (C) 2015 AIP Publishing LLC. 2015 Article PeerReviewed Piriaei, D. and Mahabadi, T.D. and Javadi, S. and Ghoranneviss, M. and Saw, S.H. and Lee, S. (2015) The study of pinch regimes based on radiation-enhanced compression and anomalous resistivity phenomena and their effects on hard x-ray emission in a Mather type dense plasma focus device (SABALAN2). Physics of Plasmas, 22 (12). ISSN 1070-664X DOI: 10.1063/1.4936801
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
topic QC Physics
spellingShingle QC Physics
Piriaei, D.
Mahabadi, T.D.
Javadi, S.
Ghoranneviss, M.
Saw, S.H.
Lee, S.
The study of pinch regimes based on radiation-enhanced compression and anomalous resistivity phenomena and their effects on hard x-ray emission in a Mather type dense plasma focus device (SABALAN2)
description In this study, by using argon and nitrogen as the filling gases in a Mather type dense plasma focus device at different values of pressure and charging voltage, two different kinds of pinch regimes were observed for each of the gases. The physics of the pinch regimes could be explained by using the two versions of the Lee's computational model which predicted each of the scenarios and clarified their differences between the two gases according to the radiation-enhanced compression and, additionally, predicted the pinch regimes through the anomalous resistivity effect during the pinch time. This was accomplished through the fitting process (simulation) on the current signal. Moreover, the characteristic amplitude and time scales of the anomalous resistances were obtained. The correlations between the features of the plasma current dip and the emitted hard x-ray pulses were observed. The starting time, intensity, duration, and the multiple or single feature of the emitted hard x-ray strongly correlated to the same respective features of the current dip. (C) 2015 AIP Publishing LLC.
format Article
author Piriaei, D.
Mahabadi, T.D.
Javadi, S.
Ghoranneviss, M.
Saw, S.H.
Lee, S.
author_facet Piriaei, D.
Mahabadi, T.D.
Javadi, S.
Ghoranneviss, M.
Saw, S.H.
Lee, S.
author_sort Piriaei, D.
title The study of pinch regimes based on radiation-enhanced compression and anomalous resistivity phenomena and their effects on hard x-ray emission in a Mather type dense plasma focus device (SABALAN2)
title_short The study of pinch regimes based on radiation-enhanced compression and anomalous resistivity phenomena and their effects on hard x-ray emission in a Mather type dense plasma focus device (SABALAN2)
title_full The study of pinch regimes based on radiation-enhanced compression and anomalous resistivity phenomena and their effects on hard x-ray emission in a Mather type dense plasma focus device (SABALAN2)
title_fullStr The study of pinch regimes based on radiation-enhanced compression and anomalous resistivity phenomena and their effects on hard x-ray emission in a Mather type dense plasma focus device (SABALAN2)
title_full_unstemmed The study of pinch regimes based on radiation-enhanced compression and anomalous resistivity phenomena and their effects on hard x-ray emission in a Mather type dense plasma focus device (SABALAN2)
title_sort study of pinch regimes based on radiation-enhanced compression and anomalous resistivity phenomena and their effects on hard x-ray emission in a mather type dense plasma focus device (sabalan2)
publishDate 2015
url http://eprints.um.edu.my/16422/
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