5 papers
Simulating the Arrival of Multiple Coronal Mass Ejections that Triggered the Gannon Superstorm on May 10, 2024
Smitha V. Thampi, Ankush Bhaskar, Prateek Mayank +2
The May 10, 2024 space weather event stands out as the most powerful storm recorded during the current solar cycle. This study employs a numerical framework utilizing a semi-empiri…
Study of Evolution and Geo-effectiveness of CME-CME Interactions using MHD Simulations with SWASTi framework
Prateek Mayank, Stefan Lotz, Bhargav Vaidya +2
The geo-effectiveness of Coronal Mass Ejections (CMEs) is a critical area of study in space weather, particularly in the lesser-explored domain of CME-CME interactions and their ge…
Using sunRunner3D to interpret the global structure of the heliosphere from in situ measurements
José Juan González-Avilés, Pete Riley, Michal Ben-Nun +2
Understanding the large-scale three-dimensional structure of the inner heliosphere, while important in its own right, is crucial for space weather applications, such as forecasting…
AuroraMag: Twin Explorer of Asymmetry in Aurora and Solar Wind-Magnetosphere Coupling
Ankush Bhaskar, Jayadev Pradeep, Shyama Narendranath +10
In the present-day context, small satellites and their constellations consisting of varying sizes (nano, micro, pico satellites) are being favored for remote sensing and in situ pr…
SWASTi-CME: A physics-based model to study CME evolution and its interaction with Solar Wind
Prateek Mayank, Bhargav Vaidya, Wageesh Mishra +1
Coronal mass ejections (CMEs) are primary drivers of space weather and studying their evolution in the inner heliosphere is vital to prepare for a timely response. Solar wind strea…