Astronomers have made an exciting discovery in the world of exoplanets, as they have uncovered new insights into the mysterious exoplanet PG192b. This distant world, located approximately 1,000 light-years away from Earth, has long been a source of fascination for scientists due to its unique characteristics and unusual behavior.
PG192b is a gas giant exoplanet, similar in size to Jupiter but with a much higher temperature due to its close proximity to its parent star. This hot Jupiter orbits its star at a distance of only 2% of the Earth-Sun distance, completing a full orbit in just 2.8 days. This close proximity causes the planet to experience extreme heat, with temperatures reaching up to 2,500 degrees Celsius on its surface.
In a recent study published in the journal Nature Astronomy, astronomers used data from NASA’s Hubble Space Telescope to study the atmosphere of PG192b in unprecedented detail. By analyzing the light passing through the exoplanet’s atmosphere as it transits in front of its star, the researchers were able to identify key molecules present in the planet’s atmosphere.
One of the most surprising findings of the study was the detection of water vapor in PG192b’s atmosphere. While water vapor has been detected in the atmospheres of other exoplanets before, this discovery is particularly significant as it adds to our understanding of the planet’s composition and potential habitability.
The presence of water vapor in PG192b’s atmosphere suggests that the planet may have formed in a similar way to Jupiter, through the accretion of icy materials in the outer regions of its star system. This finding provides valuable insights into the formation and evolution of gas giant exoplanets, shedding light on the processes that shape these distant worlds.
In addition to water vapor, the researchers also identified other key molecules in PG192b’s atmosphere, including hydrogen cyanide and methane. These molecules play a crucial role in the planet’s atmospheric chemistry and can provide clues about its origins and history.
Overall, the new insights into exoplanet PG192b offer a fascinating glimpse into the complex and diverse nature of exoplanetary systems. By studying these distant worlds, astronomers are not only expanding our knowledge of the universe but also laying the groundwork for future discoveries that could potentially lead us to new Earth-like planets in our cosmic neighborhood.
Astronomers are poised to catch a star that only shines about once every 80 years
On a cold February night in 1946, a 15-year-old schoolboy made a surprising discovery as he peered out of his bedroom window.
Michael Woodman, a keen amateur astronomer from Newport, had stayed up late waiting for his father to come home when he noticed something strange in the night sky.
“There was the constellation of Corona Borealis, but in the ring of the Corona, the second star down was bright – very bright,” he explains.
“And I thought ‘I’ve never seen anything like that before.’”
BBC/Tony Jolliffe
Michael Woodman was 15 when he spotted T Cor Bor in 1946
The next morning he wrote to the Astronomer Royal. The now 94-year-old smiles as he recalls the memory, surprised that his teenage self would be so bold.
“And bless me if the Astronomer Royal didn’t reply, with a letter I’ve still got.”
Michael Woodman had witnessed a rare celestial event that briefly dazzled the heavens. Not only that, the Astronomer Royal informed him that he was the first person in the country to have seen this.
He’d spotted a star system, about 3,000 light years away, called T Corona Borealis – or T Cor Bor for short – exploding into brightness, becoming visible in the night sky for a few short days.
“I hit the jackpot,” he says.
BBC/Tony Jolliffe
Michael Woodman could be the only person to see T Cor Bor twice
BBC/Tony Jolliffe
The Astronomer Royal confirmed Michael Woodman was the first to see T Cor Bor
How to look for T Cor Bor
Now a whole new generation of stargazers are scanning the skies again because scientists believe T Cor Bor ignites about every 80 years or so.
On a crystal clear night, in the Dark Skies Reserve of Bannau Brycheiniog, also known as the Brecon Beacons, astronomers are setting up their telescopes.
“T Cor Bor is dim at the minute – it’s magnitude 10, well below what you can see with the naked eye,” explains Dr Jenifer Millard from Fifth Star Labs.
To find the area of sky where it should appear, she advises to first locate the plough and follow its handle to Arcturus. To the west of this star is the curved constellation of Corona Borealis, made up of seven stars, and where T Cor Bor will at some point light up.
“It is only going to be visible to the naked eye for a couple of days,” she says.
“Of course, if you’ve got a small pair of binoculars or a small telescope, you’ll be able to see it for a little bit longer because you’ve got that magnifying tool. But I do think that it is the short stint in the sky that makes it really special.”
The astronomical phenomenon is caused by the interaction between two stars orbiting each other.
A small white dwarf, which is a dead star, is locked in a cosmic dance with a much larger red giant – a star that’s reaching the end of its life.
The compact white dwarf has an immense gravitational pull, so great that it steals material away from its larger neighbour.
“The gravity on the surface of the white dwarf is a million times the gravity we feel on Earth, so if we stood on it, we would be crushed instantly,” explains Dr Jane Clark, from the Cardiff Astronomical Society.
Over time, the material it grabs from the other star gets crushed and compressed – until eventually it triggers a nuclear explosion, releasing a huge amount of energy – a process known as going nova.
“And when that happens, it will shine like the best Christmas tree in town,” says Dr Clark.
BBC/Tony Jolliffe
Astronomers hope to study T Cor Bor in more detail than ever before
Astronomers think this process happens on repeat, with an outburst from T Cor Bor occurring about every 80 years.
But there aren’t many records of this. And there have already been a few false alarms that T Cor Bor was about to appear – followed by a disappointing no show.
But Dr Chris North from Cardiff University says astronomers around the world are poised to catch the light show, which will allow them to study this star in more detail than ever before.
And he’s hopeful it could appear soon.
“It seems that in the past, this has dimmed a little bit before it’s actually erupted, and there are signs that maybe, at the moment, it’s just dipping a little bit in brightness,” he says.
“So maybe that’s a hint that it’s getting close to its eruption.”
Michael Woodman certainly wants to see T Cor Bor again.
“Somebody will get me into a car and drive me out into the wild somewhere so I can have a decent look. That’s what we are hoping for,” he says.
And if he catches another glimpse of the light show, he believes it will put him in a very exclusive club – of just one.
“Eighty years on, we’re all looking at the skies again, not only me, but the whole world apparently,” he says.
“If I’m alive, if I see it, I will be the only one who’s seen it twice.”
Then with a big broad smile and a little chuckle, he adds: “Got to keep breathing!”
Attention all stargazers and astronomy enthusiasts! Get ready to witness a dazzling celestial show as astronomers eagerly await a spectacular event in the night sky.
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