Numerical study of multiple solar flare induced modulation of Very Low Frequency (VLF) diurnal profile
Sourav Palit, Subhajit Bhattacharyya, Taraknath Bera, Sandip K. Chakrabarti

TL;DR
This study numerically models how multiple solar flares modulate the VLF diurnal profile, enhancing understanding of ionospheric responses to solar activity and improving detection of space transient events.
Contribution
It presents a novel numerical reconstruction method for VLF signal modulation caused by multiple solar flares within a single day.
Findings
Successful VLF signal modulation reconstruction validates the ionization model.
The method confirms the ionosphere's potential as a detector for high-energy space transients.
Results align with previous single-flare models, extending to complex flare scenarios.
Abstract
Earth's ionosphere is a perpetual detector of ionizing radiation received from celestial objects, particularly the Sun. Solar ionizing radiation in the form of extreme ultraviolet (EUV) and X-rays during both quiet and active phase of the Sun, and charged particles associated with a solar wind imprint their ionization signatures on the ionosphere. Although due to the bipolar nature of the geomagnetic field, the events, such as the solar coronal mass ejections (CMEs) and associated solar wind enhancement, usually disturb the polar ionosphere only, the UV and X-rays from the solar flares produce sudden ionospheric disturbances (SIDs) in low-mid-latitude part of the earth's ionosphere. Such ionospheric disturbances are studied with the help of the influence they exert on radio waves propagating through earth-ionosphere waveguide. For the lower part of the ionosphere, called the D region,…
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Taxonomy
TopicsIonosphere and magnetosphere dynamics · Solar and Space Plasma Dynamics · Earthquake Detection and Analysis
