Indian solar mission's new findings throw light on enduring Sun mysteries

BBC News · collected 2026-08-14 · by Geeta Pandey
Read the original at BBC News ↗

Summary

The Indian solar observation mission Aditya-L1 has provided new insights into the mysteries of the Sun's corona, which is millions of degrees hotter than its surface. According to a recent paper in the Astrophysical Journal Letters, scientists have found that the corona maintains its high temperature through two mechanisms: waves generated by bubbling motions on the Sun's surface and the snapping and reconnection of magnetic field lines. The study suggests that these processes allow the Sun to replenish lost energy within hours, preventing it from cooling down. Prof Ramesh, a leading Indian solar astrophysicist, says this mechanism is crucial for maintaining the Sun's stability and preventing Earth from plunging into an "irreversible deep freeze".
Written by the local model on 2026-08-14, using this article's own text rather than the other coverage of the same event (that is the story summary below).

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Claims extracted
28
claim-shaped sentences
Uncertain
0%
0 of 28 hedged
Leaning
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Publisher trust
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Outlets on this story
1
Science
Narrative spread
1
articles carrying this framing
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Story summary

Scientists at the Indian Institute of Astrophysics have made new discoveries about the Sun, specifically its corona, which is a mysterious outer atmosphere that reaches temperatures of up to 40 million degrees Celsius. The corona is hotter than the surface of the Sun by itself, and this phenomenon has puzzled scientists for a long time. According to leading solar astrophysicist Prof R Ramesh, if the Sun's energy weren't somehow replenished after each coronal mass ejection (CME), the star at the center of our solar system would lose all its energy and Earth would freeze. The new findings from India's first solar observation mission in space, Aditya-L1, have provided some clues to understanding this mystery.

Written for “Indian Solar Mission Research” on 2026-08-31, grounded in this article and the 0 other(s) covering the same event.
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Story

📰 Indian Solar Mission Research
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Who wrote this

Geeta Pandey
3 article(s) here · 1 carrying a prediction
🔮 The row started earlier on Tuesday after actor and BJP MP Kangana Ranaut called the ad "intentionally creepy" and asked why someone would tie a Rakhi dressed in a bikini.
🔮 Describing the diamond as "precious", Patel said it would be put up for auction in the first half of October.
🔮 "Now if the Sun is losing such huge amounts of energy with each CME and it's not replenished, the star at the centre of our solar system would lose all its energy and Earth would plunge into an irreversible deep freeze," Prof Ramesh says. But since that's not happening, it means there's a "mechanism" by which the corona is able to maintain its inexplicably high temperature, he says.
Also by Geeta Pandey
Nothing else under this byline is closely related to this article, so these are simply their most recent.

Topics

Aditya-L1 Astrophysical Journal Letters India Indian the Indian Institute of Astrophysics

Subjects

Ramesh PERSON · 5× Astrophysical Journal Letters ORG · 1× IIA ORG · 1× India GPE · 1× Indian NORP · 1× R Ramesh PERSON · 1× the Indian Institute of Astrophysics ORG · 1×

Narrative

"Now if the Sun is losing such huge amounts of energy with each CME and it's not replenished, the star at the centre of our solar system would lose all its energy and Earth would plunge into an irreversible deep freeze," Prof Ramesh says. But since that's not happening, it means there's a "mechanism" by which the corona is able to maintain its inexplicably high temperature, he says.
framing: assertive · carried by 1 article(s) · first seen 2026-08-14
🔮 "Now if the Sun is losing such huge amounts of energy with each CME and it's not replenished, the star at the centre of our solar system would lose all its energy and Earth would plunge into an irreversible deep freeze," Prof Ramesh says. But since that's not happening, it means there's a "mechanism" by which the corona is able to maintain its inexplicably high temperature, he says.

Claims (28 extracted, 0 hedged)

One of the most enduring mysteries that has been puzzling scientists forever is how the Sun's outer atmosphere - the corona - is millions of degrees hotter than its surface. asserted
atmosphere → puzzle → surface
And how does the corona continue to remain so hot despite frequent eruptions during which it loses huge amounts of energy? asserted
it → continue → energy
Astrophysicists in India now say the latest findings from Aditya-L1, the country's first solar observation mission in space, have provided them some vital clues to unlocking those mysteries. asserted
findings → say → mysteries
Their findings are revealed in a recent paper published in the prestigious Astrophysical Journal Letters. asserted
findings → reveal → Letters
The temperature variations in different regions of the Sun defy the laws of physics, says leading Indian solar astrophysicist Prof R Ramesh of the Indian Institute of Astrophysics (IIA) who led the study. asserted
who → defy → study
If you cut through the Sun's layers, deep inside is the core where the temperature is 15 million Celsius. asserted
temperature → cut → layers
Travel outwards to the surface or the photosphere - the part that we see from the Earth - it's about 5,500C. asserted
it → travel → Earth
Far away from the core is the Sun's outermost layer or corona where the temperature is about 2 million C - it can sometimes go up to 40 million C. Prof Ramesh says the corona is where extreme weather events - such as solar flares and coronal mass ejections (CMEs) - originate, during which large amounts of energy is released by the Sun into space. asserted
amounts → go → space
The CMEs cause beautiful auroras, and they can also affect life on Earth by causing geomagnetic storms that can knock down power grids and affect weather and communication satellites. asserted
that → cause → satellites
In normal or low-activity times, the Sun launches two to three CMEs a day. asserted
Sun → launch → CMEs
During the maximum solar activity cycle that comes every 11 years, there can be 10 or more in a single day. asserted
that → come → day
"Now if the Sun is losing such huge amounts of energy with each CME and it's not replenished, the star at the centre of our solar system would lose all its energy and Earth would plunge into an irreversible deep freeze," Prof Ramesh says. But since that's not happening, it means there's a "mechanism" by which the corona is able to maintain its inexplicably high temperature, he says. asserted
he → lose → temperature
Scientists put it down to two factors - one, the bubbling boiling motions on the Sun's surface that constantly generate waves which, as they travel outwards, carry energy to the corona - a bit like sea waves carrying foam and froth to the shore. asserted
they → put → shore
The second is the "tangled magnetic field lines" in the Sun's atmosphere that constantly snap and then reconnect. asserted
that → snap → atmosphere
Prof Ramesh says a CME occurs when these twisting, looping lines - which resemble braided hair - rupture, throwing out massive clouds of magnetised plasma and gas in space. asserted
which → say → space
They often originate near sunspots, which are darker, cooler spots on the Sun where magnetic fields are particularly strong. asserted
fields → originate → Sun
"But then these lines reconnect and the Sun replenishes the lost energy back within hours," he adds. asserted
he → reconnect → hours
In their paper, Prof Ramesh says they have been able to quantify how much energy each of the two systems supply to the corona – which explains both why it's so many times hotter to begin with and how it retains that temperature after consistently losing energy. asserted
it → say → energy
Their study, he says, clearly shows that it's the second system that supplies most of the energy. asserted
that → say → energy
"Though the waves generated as a result of the bubbling, boiling motions on the Sun's surface generate and transport energy, their contribution is very little - they supply only 7% of the energy requirement. asserted
they → generate → requirement
"The remaining 93% comes because the Sun reconfigures itself and replenishes the lost energy." asserted
Sun → remain → energy
To arrive at that calculation, Prof Ramesh says they studied a "very energetic" CME that took place on 5 August 2024. asserted
that → arrive → August
Emissions were recorded by Aditya-L1's coronagraph called Velc (Visible Emission Line Coronagraph). asserted
Emissions → record → coronagraph
"We saw that in 10 hours after the CME, the tangled field lines were able to go back to their original place, they reconnected and corona's energy was reconfigured," he said. asserted
he → see → place
"We do recognise that energy generated by bubbly motions plays a major role in it, but we have evidence that it is not sufficient. asserted
it → recognise → evidence
Our study shows that the magnetic field lines snapping and reconnecting everywhere on the Sun are the primary source for supplying most of the energy." asserted
lines → show → energy
These data, Prof Ramesh says, "provide an important benchmark" for future studies into the potential energy generation mechanisms in the Sun's atmosphere. asserted
Ramesh → say → atmosphere
"I think they would help answer the fundamental questions of physics that defy logic," he says. asserted
he → think → logic
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