{"title":"Was the Unseasonal Development of Post-Sunset Equatorial Plasma Bubbles in Southeast Asia Driven by Quasi-2-Day Planetary Waves?","authors":"Guofeng Dai, Guozhu Li, Yuichi Otsuka, Lianhuan Hu, Wenjie Sun, Baiqi Ning, Donghe Zhang, Jiuhou Lei, Haiyong Xie, Xiukuan Zhao, Michi Nishioka, Septi Perwitasari, Punyawi Jamjareegulgarn, Yi Li, Chunxiao Yan","doi":"10.1029/2024JA033280","DOIUrl":null,"url":null,"abstract":"<p>Previous studies suggest that the planetary waves in mesosphere and low thermosphere (MLT) could modulate the occurrence of equatorial plasma bubbles (EPBs) via altering post-sunset <i>F</i> layer height. Using simultaneous observations by Global Navigation Satellite System receiver networks, two ionosondes separated by about 10° in longitude, high frequency and very high frequency radars, we investigated the day-to-day variations of post-sunset <i>F</i> layer height and EPB occurrence in southeast Asia during the quasi-2-day planetary wave (QTDW) event in July 2023. The results showed that the post-sunset <i>F</i> layer height over Bac Lieu (9.3°N, 105.7°E) and EPB occurrence had a quasi-2-day (QTD) variation. However, such a 2 day variation of <i>F</i> layer height was confined in a very limited longitude, that is contradictory to the planetary scale characteristics of QTDW. We suggest that the QTD variations of post-sunset <i>F</i> layer height and EPB occurrence over the specific location were not necessarily due to the QTDW in MLT. The local seeding source, as characterized by satellite traces in ionosonde ionograms, could drive the small-scale longitudinal structure of <i>F</i> layer height and play an important role in shaping the QTD variation of EPB. The results implicate that the connection between planetary waves and the EPB occurrence over a specific location should be interpreted carefully, even if the day-to-day variation of post-sunset <i>F</i> layer height shows periodic behavior with planetary wave scale.</p>","PeriodicalId":15894,"journal":{"name":"Journal of Geophysical Research: Space Physics","volume":"130 3","pages":""},"PeriodicalIF":2.9000,"publicationDate":"2025-03-03","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Journal of Geophysical Research: Space Physics","FirstCategoryId":"89","ListUrlMain":"https://agupubs.onlinelibrary.wiley.com/doi/10.1029/2024JA033280","RegionNum":2,"RegionCategory":"地球科学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q2","JCRName":"ASTRONOMY & ASTROPHYSICS","Score":null,"Total":0}
引用次数: 0
Abstract
Previous studies suggest that the planetary waves in mesosphere and low thermosphere (MLT) could modulate the occurrence of equatorial plasma bubbles (EPBs) via altering post-sunset F layer height. Using simultaneous observations by Global Navigation Satellite System receiver networks, two ionosondes separated by about 10° in longitude, high frequency and very high frequency radars, we investigated the day-to-day variations of post-sunset F layer height and EPB occurrence in southeast Asia during the quasi-2-day planetary wave (QTDW) event in July 2023. The results showed that the post-sunset F layer height over Bac Lieu (9.3°N, 105.7°E) and EPB occurrence had a quasi-2-day (QTD) variation. However, such a 2 day variation of F layer height was confined in a very limited longitude, that is contradictory to the planetary scale characteristics of QTDW. We suggest that the QTD variations of post-sunset F layer height and EPB occurrence over the specific location were not necessarily due to the QTDW in MLT. The local seeding source, as characterized by satellite traces in ionosonde ionograms, could drive the small-scale longitudinal structure of F layer height and play an important role in shaping the QTD variation of EPB. The results implicate that the connection between planetary waves and the EPB occurrence over a specific location should be interpreted carefully, even if the day-to-day variation of post-sunset F layer height shows periodic behavior with planetary wave scale.
以往的研究表明,中层和低热层(MLT)的行星波可以通过改变日落后F层高度来调节赤道等离子体气泡(EPBs)的发生。利用全球卫星导航系统接收机网络、经度间隔约10°的两台电离仪、高频和甚高频雷达同时观测,研究了2023年7月准2天行星波(QTDW)事件期间东南亚地区日落后F层高度和EPB发生的日变化。结果表明:北流日落后F层高度(9.3°N, 105.7°E)和EPB发生具有准2 d (QTD)变化;然而,F层高度的这2天变化被限制在一个非常有限的经度,这与QTDW的行星尺度特征是矛盾的。我们认为,日落后F层高度和特定地点EPB发生的QTD变化并不一定是由于MLT中的QTDW所致。局地播源可以驱动F层高度的小尺度纵向结构,对EPB的QTD变化具有重要影响。结果表明,即使日落后F层高度的逐日变化在行星波尺度上表现出周期性的行为,也应仔细解释行星波与特定地点发生的EPB之间的联系。