most citedConnecting 3D evolution of Coronal Mass Ejections to their Source Regions

28 citations · 54 across the 3 of their papers we have counts for

collaborators

5 papers

astro-ph.SR202114 cited

Imaging and Spectral Observations of a Type-II Radio Burst Revealing the Section of the CME-Driven Shock that Accelerates Electrons

Satabdwa Majumdar, Srikar Paavan Tadepalli, Samriddhi Sankar Maity +4

We report on a multi-wavelength analysis of the 26 January 2014 solar eruption involving a coronal mass ejection (CME) and a Type-II radio burst, performed by combining data from v…

astro-ph.SR202012 cited

Automated Detection of Accelerating Solar Eruptions using Parabolic Hough Transform

Ritesh Patel, Vaibhav Pant, Priyanka Iyer +3

Solar eruptions such as Coronal Mass Ejections (CMEs) observed in the inner solar corona (up to 4 R) show acceleration profiles which appear as parabolic ridges in height…

astro-ph.SR2020

Statistical Study of Plasmoids associated with post-CME Current Sheet

Ritesh Patel, Vaibhav Pant, K. Chandrashekhar +1

We investigate the properties of plasmoids observed in the current sheet formed after an X-8.3 flare followed by a fast CME eruption on September 10, 2017 using Extreme Ultraviolet…

astro-ph.SR202028 cited

Connecting 3D evolution of Coronal Mass Ejections to their Source Regions

Satabdwa Majumdar, Vaibhav Pant, Ritesh Patel +1

Since Coronal Mass Ejections (CMEs) are the major drivers of space weather, it is crucial to study their evolution starting from the inner corona. In this work we use Graduated Cyl…

astro-ph.SR2018

Onboard Automated CME Detection Algorithm for Visible Emission Line Coronagraph on ADITYA-L1

Ritesh Patel, K Amareswari, Vaibhav Pant +3

ADITYA-L1 is India's first space mission to study the Sun from Lagrangian 1 position. { \textit{Visible Emission Line Coronagraph}} (VELC) is one of the seven payloads in ADITYA-L1…