Microwave radiation associated with positive narrow bipolar events

In this paper, we examined seven isolated positive Narrow Bipolar Events (NBEs), one positive NBE that initiated an IC flash progressed to a single-stroke Cloud-to-Ground (CG) flash, and one positive NBE that initiated an IC flash. Seven NBEs have been accompanied by significant Very-High Frequency...

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Main Authors: Ahmad, Mohd Riduan, Al-Ammari, Ammar Mohammed Qaid, Shamsul Baharin, Shamsul Ammar, Mohammad Sabri, Muhammad Haziq, Al-kahtani, Ammar Ahmed Nasser, Lu, Gaopeng, Kawasaki, Zenichiro, Cooray, Vernon
Format: Article
Language:English
Published: Elsevier Ltd 2022
Online Access:http://eprints.utem.edu.my/id/eprint/27327/2/0120227122023611.PDF
http://eprints.utem.edu.my/id/eprint/27327/
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description In this paper, we examined seven isolated positive Narrow Bipolar Events (NBEs), one positive NBE that initiated an IC flash progressed to a single-stroke Cloud-to-Ground (CG) flash, and one positive NBE that initiated an IC flash. Seven NBEs have been accompanied by significant Very-High Frequency (VHF) and microwave radiation pulses. We recorded all NBEs from two measurement stations (ST1 and ST2) separated at 13.3 km apart which consisted of fast antenna (FA) and slow antenna (SA) sensors, a magnetic field (B-field) sensor, a VHF sensor (60 MHz), and a microwave sensor (0.97 GHz). The waveforms were sampled at 2.5 GHz (400 ps). The key finding is that all microwave radiation pulses have been found to precede both the VHF radiation pulses and NBEs with average lead time of 63 ± 39 ns and 122 ± 143 ns, respectively. In comparison to stepped leader pulses or SLPs (conventional breakdown), the average lead time of microwave to VHF for NBEs (fast breakdown) was 88% faster compared to the average lead time of microwave to VHF for SLPs. Moreover, the average lead time of VHF to NBEs was 56% faster when compared to the average lead time of VHF to SLPs. The VHF interferometer map for an isolated NBE (NBE6) showed upward propagation of VHF radiation sources (fast negative breakdown) with initiation altitude, total length of the VHF radiation sources propagation, and estimated velocity were 10.2 ± 0.3 km, 2.9 ± 0.6 km, and 1.8 × 108 and 2.8 × 108 ms−1, respectively. On the other hand, interferometer map for an NBE that initiated a single-stroke CG (NBE3) showed bidirectional fast streamers propagation with initiation altitude, total length of the VHF radiation sources propagation, and estimated velocity were 14.0 ± 0.4 km, 2.9 ± 0.82 km, and 1.6 × 108 and 2.8 × 108 ms−1, respectively. Clearly, the microwave and VHF radiation pulses associated with positive NBEs have been emitted by different processes of fast breakdown mechanism. Therefore, it can be suggested that the microwave radiation is emitted by electron avalanches/corona while the VHF radiation is emitted by fast propagating streamers.
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author Ahmad, Mohd Riduan
Al-Ammari, Ammar Mohammed Qaid
Shamsul Baharin, Shamsul Ammar
Mohammad Sabri, Muhammad Haziq
Al-kahtani, Ammar Ahmed Nasser
Lu, Gaopeng
Kawasaki, Zenichiro
Cooray, Vernon
spellingShingle Ahmad, Mohd Riduan
Al-Ammari, Ammar Mohammed Qaid
Shamsul Baharin, Shamsul Ammar
Mohammad Sabri, Muhammad Haziq
Al-kahtani, Ammar Ahmed Nasser
Lu, Gaopeng
Kawasaki, Zenichiro
Cooray, Vernon
Microwave radiation associated with positive narrow bipolar events
author_facet Ahmad, Mohd Riduan
Al-Ammari, Ammar Mohammed Qaid
Shamsul Baharin, Shamsul Ammar
Mohammad Sabri, Muhammad Haziq
Al-kahtani, Ammar Ahmed Nasser
Lu, Gaopeng
Kawasaki, Zenichiro
Cooray, Vernon
author_sort Ahmad, Mohd Riduan
title Microwave radiation associated with positive narrow bipolar events
title_short Microwave radiation associated with positive narrow bipolar events
title_full Microwave radiation associated with positive narrow bipolar events
title_fullStr Microwave radiation associated with positive narrow bipolar events
title_full_unstemmed Microwave radiation associated with positive narrow bipolar events
title_sort microwave radiation associated with positive narrow bipolar events
publisher Elsevier Ltd
publishDate 2022
url http://eprints.utem.edu.my/id/eprint/27327/2/0120227122023611.PDF
http://eprints.utem.edu.my/id/eprint/27327/
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spelling my.utem.eprints.273272024-07-04T10:45:37Z http://eprints.utem.edu.my/id/eprint/27327/ Microwave radiation associated with positive narrow bipolar events Ahmad, Mohd Riduan Al-Ammari, Ammar Mohammed Qaid Shamsul Baharin, Shamsul Ammar Mohammad Sabri, Muhammad Haziq Al-kahtani, Ammar Ahmed Nasser Lu, Gaopeng Kawasaki, Zenichiro Cooray, Vernon In this paper, we examined seven isolated positive Narrow Bipolar Events (NBEs), one positive NBE that initiated an IC flash progressed to a single-stroke Cloud-to-Ground (CG) flash, and one positive NBE that initiated an IC flash. Seven NBEs have been accompanied by significant Very-High Frequency (VHF) and microwave radiation pulses. We recorded all NBEs from two measurement stations (ST1 and ST2) separated at 13.3 km apart which consisted of fast antenna (FA) and slow antenna (SA) sensors, a magnetic field (B-field) sensor, a VHF sensor (60 MHz), and a microwave sensor (0.97 GHz). The waveforms were sampled at 2.5 GHz (400 ps). The key finding is that all microwave radiation pulses have been found to precede both the VHF radiation pulses and NBEs with average lead time of 63 ± 39 ns and 122 ± 143 ns, respectively. In comparison to stepped leader pulses or SLPs (conventional breakdown), the average lead time of microwave to VHF for NBEs (fast breakdown) was 88% faster compared to the average lead time of microwave to VHF for SLPs. Moreover, the average lead time of VHF to NBEs was 56% faster when compared to the average lead time of VHF to SLPs. The VHF interferometer map for an isolated NBE (NBE6) showed upward propagation of VHF radiation sources (fast negative breakdown) with initiation altitude, total length of the VHF radiation sources propagation, and estimated velocity were 10.2 ± 0.3 km, 2.9 ± 0.6 km, and 1.8 × 108 and 2.8 × 108 ms−1, respectively. On the other hand, interferometer map for an NBE that initiated a single-stroke CG (NBE3) showed bidirectional fast streamers propagation with initiation altitude, total length of the VHF radiation sources propagation, and estimated velocity were 14.0 ± 0.4 km, 2.9 ± 0.82 km, and 1.6 × 108 and 2.8 × 108 ms−1, respectively. Clearly, the microwave and VHF radiation pulses associated with positive NBEs have been emitted by different processes of fast breakdown mechanism. Therefore, it can be suggested that the microwave radiation is emitted by electron avalanches/corona while the VHF radiation is emitted by fast propagating streamers. Elsevier Ltd 2022-12 Article PeerReviewed text en http://eprints.utem.edu.my/id/eprint/27327/2/0120227122023611.PDF Ahmad, Mohd Riduan and Al-Ammari, Ammar Mohammed Qaid and Shamsul Baharin, Shamsul Ammar and Mohammad Sabri, Muhammad Haziq and Al-kahtani, Ammar Ahmed Nasser and Lu, Gaopeng and Kawasaki, Zenichiro and Cooray, Vernon (2022) Microwave radiation associated with positive narrow bipolar events. Journal of Atmospheric and Solar-Terrestrial Physics, 242. pp. 1-11. ISSN 1364-6826 https://pdf.sciencedirectassets.com/271871/1-s2.0-S1364682622X00114/1-s2.0-S1364682622001717/main.pdf?X-Amz-Security-Token=IQoJb3JpZ2luX2VjEFcaCXVzLWVhc3QtMSJIMEYCIQDh9g%2FlsvqC%2FvuJXz3OQqmjfdVAec9j1slG56P%2BMzxTlAIhANtb8CyRNhgJgPcdX7GWsIEG9mX0mkOehqr4DlwX7KNCKrwFCJ%2F%2F%2F%2F%2F%2F%2F%2F%2F%2F%2FwEQBRoMMDU5MDAzNTQ2ODY1IgxaTJ1nRBcphbPJrjcqkAUdIlAxcCBzoRojhZG4iOWuzcRuydMvTFIMkkFI%2BzQNcMBhivyheXugM66c8H9HS6sEezcoRxLkxbcgcBOX%2BKAdP6%2B8z87xh107l2AkhCReYwMTufDWlTl7tua%2B8ONEe5JD196%2BgEE%2BG0CPhL9Pyc%2BH8VQ%2BFPhLRL8B4SkKlQPD8XUF7lA8d4EiURz1MLnDSwPEoATn7Ps%2FuwjOOeddD%2FYc76i2%2Fg%2F4eELq3aVmS1ISQJEtliQulju4wZvQo7YVz1RSchjiOVicgpp6e1l%2Fkq8fy0niGuJARTBS1QGVcqXPaYwTT%2BGstVa7BK9vjYUzlbByzZjwK7y4AomcdZkvVzOFzcngDCrw8e%2Fd7QwXDezUXmZBuOu8ggiMHJjFiUS2j0OulNCxoDySNsBq%2BhOApzoZGTZRkNy8gx9DerCpFwyvMNxd9qjU1ig6YNkHAhBn12ndhgJvxOdWWHq1E1Wp0gSSJ%2BDOzXwS4mtIIKQKFNlXHadxPzoP12jMSgkOziBfd0%2FRT1Snq3UunfGcXIJsBYA%2FPTih1skCzkpYKZPmePpw%2FQa4RobKVllXy13eQtnLyyha2OkW8okzwuYPvKSuUPVsL7UkW6A1fgQaFONtURDrPtLuqdagzJ5Nwl17nSitWq4DJe59fWm%2Bt00F3tqhVJ96sJr8lnO7PqFT%2F2KbJMdeYxP9MckA09rAAOCpHYJnacGVj%2Fcwa7f1pFeoAOjjLdJi1zTtCAzoNXkI8SofdOhC37Yoqsefpiu4396SLPWn62V3FiaK7YuVCdrZ0jPZlVLsv61%2BkBv7ObN5Nn53Rn0mUp1Luc00F%2B1IrBL71bMJQ2wavGwqSbcGXGhNij19zjK42mj6ckRVTXOA3A9uHJvp3zDi56exBjqwAYGz82sfwOwe%2Ff9T%2BP1i4s6BqLEmvH6MbckMCiKRwLOr9cdWO1FksAX04KuiNksert3MFqSuNsZ%2BCt31fSNI9Ohi9DqiLdbhtdJS5ay7vQQ%2F2p8cqhddHdLdRJAlvsimlLBNj2Vlig5I7CHe%2BRn%2Fe5gG9fkkZ5cR3GR8721s3hoS6cFSxvOKNZLKicwqITcoEtH8fG%2FiaNwmW8vQ62giD2ZJVuW22A0CABhTiFT%2FSmBa&X-Amz-Algorithm=AWS4-HMAC-SHA256&X-Amz-Date=20240425T071042Z&X-Amz-SignedHeaders=host&X-Amz-Expires=300&X-Amz-Credential=ASIAQ3PHCVTYYJMDIGXM%2F20240425%2Fus-east-1%2Fs3%2Faws4_request&X-Amz-Signature=939c525cc7d813722b6525c00a1d74bf43418322e84ee2169868ef215c2a426d&hash=71b94ec158b5b55e6dbdc008f59989404c82b3ce6362d796bc4965ecf1b0d139&host=68042c943591013ac2b2430a89b270f6af2c76d8dfd086a07176afe7c76c2c61&pii=S1364682622001717&tid=spdf-34b2355f-3631-4009-9929-2c3e3c4c0a71&sid=50e3853a40ee1743288876c1e4250be99520gxrqb&type=client&tsoh=d3d3LnNjaWVuY2VkaXJlY3QuY29t&ua=031c5751570d575607&rr=879c83c7d8b813e3&cc=my 10.1016/j.jastp.2022.105998
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