Solar coronal density turbulence and magnetic field strength at the source regions of two successive metric type II radio bursts

R Ramesh, C Kathiravan, A Kumari - The Astrophysical Journal, 2023 - iopscience.iop.org
We report spectral and polarimeter observations of two weak, low-frequency (≈ 85–60 MHz)
solar coronal type II radio bursts that occurred on 2020 May 29 within a time interval≈ 2 …

An estimate of the magnetic field strength associated with a solar coronal mass ejection from low frequency radio observations

KS Raja, R Ramesh, K Hariharan… - The Astrophysical …, 2014 - iopscience.iop.org
We report ground based, low frequency heliograph (80 MHz), spectral (85–35 MHz), and
polarimeter (80 and 40 MHz) observations of drifting, non-thermal radio continuum …

A butterfly diagram and carrington maps for century-long Ca II K spectroheliograms from the Kodaikanal observatory

S Chatterjee, D Banerjee… - The Astrophysical Journal, 2016 - iopscience.iop.org
ABSTRACT The century-long (1907–2007) Ca ii K spectroheliograms from the Kodaikanal
Solar Observatory (KSO) are calibrated, processed, and analyzed to follow the evolution of …

Strength of the solar coronal magnetic field–a comparison of independent estimates using contemporaneous radio and white-light observations

A Kumari, R Ramesh, C Kathiravan, TJ Wang - Solar Physics, 2017 - Springer
We estimated the coronal magnetic field strength (BB) during the 23 July 2016 coronal mass
ejection (CME) event using i) the flux rope structure of the CME in the white-light …

New evidence for a coronal mass ejection-driven high frequency type II burst near the Sun

A Kumari, R Ramesh, C Kathiravan… - The Astrophysical …, 2017 - iopscience.iop.org
We report observations of the high frequency type II radio burst (≈ 430–30 MHz) that
occurred in the solar corona on 2015 November 4. The drift rate of the burst, estimated close …

Circular Polarization Observations of Type II Solar Radio Bursts and the Coronal Magnetic Field

R Ramesh, C Kathiravan… - The Astrophysical …, 2022 - iopscience.iop.org
It is well known that magnetic field strength (B) in the solar corona can be calculated using
the Alfvén Mach number (MA) and Alfvén speed (v A) of the magnetohydrodynamic shock …

Direct estimates of the solar coronal magnetic field using contemporaneous extreme-ultraviolet, radio, and white-light observations

A Kumari, R Ramesh, C Kathiravan… - The Astrophysical …, 2019 - iopscience.iop.org
We report a solar coronal split-band type II radio burst that was observed on 2016 March 16
with the Gauribidanur Radio Spectro-Polarimeter in the frequency range≈ 90–50 MHz, and …

Solar type IIIb radio bursts as tracers for electron density fluctuations in the corona

V Mugundhan, K Hariharan, R Ramesh - Solar Physics, 2017 - Springer
We present an estimation of the electron density modulation index (δ N e N e δN_eN_e) for
the first time using solar type IIIb radio burst observations. The mean value of δ N e N e …

New results from the spectral observations of solar coronal type II radio bursts

R Ramesh, C Kathiravan… - The Astrophysical …, 2022 - iopscience.iop.org
We carried out a statistical study of twenty-six type II radio bursts from the Sun observed with
the Gauribidanur Low-frequency Solar Spectrograph in the frequency range 85–35 MHz …

Turbulent proton heating rate in the solar wind from 5–45 r⊙

KS Raja, P Subramanian, M Ingale… - The Astrophysical …, 2021 - iopscience.iop.org
Various remote sensing observations have been used so far to probe the turbulent
properties of the solar wind. Using the recently reported density modulation indices that are …