The impacts of tropospheric gravity wave-generated MSTIDs on skywaves at middle latitude North American sector observed and modeled using SuperDARN HF radars

Fuente: arXiv
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Hauptverfasser: Chakraborty, S., Inchin, P. A., Debchoudhury, S., Heale, C., Bergsson, B., Zettergren, M., Ruohoniemi, J. M.
Format: Preprint
Veröffentlicht: 2025
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author Chakraborty, S.
Inchin, P. A.
Debchoudhury, S.
Heale, C.
Bergsson, B.
Zettergren, M.
Ruohoniemi, J. M.
author_facet Chakraborty, S.
Inchin, P. A.
Debchoudhury, S.
Heale, C.
Bergsson, B.
Zettergren, M.
Ruohoniemi, J. M.
contents Trans-ionospheric high frequency (HF: 3-30 MHz) response to gravity waves (GWs) is studied in the middle-latitude ionosphere in relation to thunderstorm activity. SuperDARN HF radar observations are compared against the model simulations to quantify the impact of GW-generated MSTID (medium-scale traveling ionospheric disturbances) activity on the skywaves traveling through ionospheric F-region heights. The tropospheric thunderstorm-driven convective source is modeled using MAGIC. The outputs are coupled with GEMINI to model ionospheric plasma response, which is then used to model SuperDARN HF radar observations using the PHaRLAP raytracing tool. Semi-concentric GWs were observed at different atmospheric heights, creating MSTIDs at F-region heights. PHaRLAP raytracing through the modeled ionosphere shows great qualitative agreement with SuperDARN daytime ground scatter observations. Modeled rays show possibilities of long ducting Pedersen rays, suggesting MSTID can create a plasma waveguide to duct rays at the F-region height.
format Preprint
id arxiv_https___arxiv_org_abs_2506_23984
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The impacts of tropospheric gravity wave-generated MSTIDs on skywaves at middle latitude North American sector observed and modeled using SuperDARN HF radars
Chakraborty, S.
Inchin, P. A.
Debchoudhury, S.
Heale, C.
Bergsson, B.
Zettergren, M.
Ruohoniemi, J. M.
Space Physics
Plasma Physics
Trans-ionospheric high frequency (HF: 3-30 MHz) response to gravity waves (GWs) is studied in the middle-latitude ionosphere in relation to thunderstorm activity. SuperDARN HF radar observations are compared against the model simulations to quantify the impact of GW-generated MSTID (medium-scale traveling ionospheric disturbances) activity on the skywaves traveling through ionospheric F-region heights. The tropospheric thunderstorm-driven convective source is modeled using MAGIC. The outputs are coupled with GEMINI to model ionospheric plasma response, which is then used to model SuperDARN HF radar observations using the PHaRLAP raytracing tool. Semi-concentric GWs were observed at different atmospheric heights, creating MSTIDs at F-region heights. PHaRLAP raytracing through the modeled ionosphere shows great qualitative agreement with SuperDARN daytime ground scatter observations. Modeled rays show possibilities of long ducting Pedersen rays, suggesting MSTID can create a plasma waveguide to duct rays at the F-region height.
title The impacts of tropospheric gravity wave-generated MSTIDs on skywaves at middle latitude North American sector observed and modeled using SuperDARN HF radars
topic Space Physics
Plasma Physics
url https://arxiv.org/abs/2506.23984