Eerie glowing spot on Jupiter holding secrets of dark matter, scientists suggest

Eerie glowing spot on Jupiter holding secrets of dark matter, scientists suggest

James Webb telescope spots glowing spot on Jupiter.

Jupiter again stunned the astronomers after they found the Great Red Spot on its surface with the help of the James Webb Space Telescope (JWST).

The spot was unseen till now and came as a surprise to the scientists who suspected that it was caused by powerful atmospheric gravity waves.

TheGreat Red Spot is now being considered as the largest storm ever formed in thesolar system. It is twice as big as Earth and is believed to range for at least 300 years,as per NASA.

Thewinds of the Great Red Spothave been recorded to blow at a speed of 270 to 425 miles per hour (430 to 680 kilometres per hour) and are nearly 3.5 times as fast as a tornado which occurs on Earth.

In a statement, team leader Henrik Melin of the University of Leicester said, "We thought this region, perhaps naively, would be really boring. It is, in fact, just as interesting as thenorthern lights, if not more so. Jupiter never ceases to surprise."

Did dark matter create the mysterious spot?

A whole bunch of dark matter continues to lurk in the universe and has remained elusive to scientists.

Nearly 70 to 80 per cent of all mass is considered dark matter. That matter includeseverything detected - stars, planets,black holes, dust, gas, moons, people.

Now, scientists suspect that the infrared glow in Jupiter's atmosphere may have been produced after an interaction with the dark matter.

Charged hydrogen ions known as trihydrogen cations (H3+) are present in abundance in the area.

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Several cosmic processes can lead to the production of H3+in the Jovian atmosphere and an interaction with dark matter can produce an excess of H3+.

PhysicistsCarlos Blanco of Princeton University and Stockholm University, and Rebecca Leane of the Stanford Linear Accelerator Center (SLAC) National Accelerator Laboratory and Stanford University wrote, "We point out that dark matter can produce an additional source of H3+in planetary atmospheres."

"This will be produced if dark matter scatters and is captured by planets, and consequently annihilates, producing ionizing radiation," he added.

(With inputs from agencies)

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