Oxford News
Researchers reveal a new class of molten planet
Artistic conception of the James Webb Space Telescope. Credit: NASA GSFC/CIL/Adriana Manrique Gutierre.
The exoplanet (a planet that orbits a star outside the Solar System), known as L 98-59 d, orbits a small red star about 35 light-years from Earth. Recent observations from the James Webb Space Telescope (JWST) and ground-based observatories suggested something unusual: the planet has an especially low density, given its size (which is about 1.6 times that of the Earth) and contains significant amounts of hydrogen sulfide in its atmosphere.
Until now, astronomers would have placed a planet like this into one of two familiar categories, either a rocky ‘gas-dwarf’ with an atmosphere of hydrogen, or a water-rich world made of deep oceans and ice. But these new findings reveal that L 98-59 d fits neither description – instead, it appears to belong to an entirely different class of planet containing heavy sulphur molecules.
A planet with an ocean of magma
This discovery suggests that the categories astronomers currently use to describe small planets may be too simple. … We may then ask: what other types of planet are waiting to be uncovered?
Lead author Dr Harrison Nicholls (Department of Physics, University of Oxford)
Using advanced computer simulations, a team of researchers from the University of Oxford, the University of Groningen, the University of Leeds and ETH Zurich, reconstructed the planet’s history from shortly after its birth to the present day – a span of nearly five billion years. By directly linking telescope observations to these detailed physical models of planetary interiors and atmospheres, they were able to determine what must be happening deep inside the planet.
Their results reveal that the mantle of L 98-59 d is likely molten silicate (similar to lava on Earth), with a global magma ocean extending thousands of kilometres beneath. This vast molten reservoir allows the planet to store extremely large amounts of sulphur deep inside its interior, over geologic timescales. The magma ocean also helps L 98-59 d to retain a thick hydrogen-rich atmosphere containing sulphur-bearing gases such as hydrogen sulphide (H2S). Normally, this would be lost to space over time, due to X-ray radiation produced by the host star.
Over billions of years, chemical exchanges between its molten interior and atmosphere have shaped what telescopes observe on L 98-59 d today. The researchers suggest that L 98-59 d may be the first recognised member of a broader population of gas-rich sulphurous planets sustaining long lived magma oceans. If so, the diversity of worlds in our galaxy may be even greater than previously imagined.
Lead author Dr Harrison Nicholls (Department of Physics, University of Oxford) said: ‘This discovery suggests that the categories astronomers currently use to describe small planets may be too simple. While this molten planet is unlikely to support life, it reflects the wide diversity of the worlds which exist beyond the Solar System. We may then ask: what other types of planet are waiting to be uncovered?’
How sulphur shapes the planet
What’s exciting is that we can use computer models to uncover the hidden interior of a planet we will never visit… this research shows that it is possible to reconstruct the deep past of these alien worlds – and discover types of planets with no equivalent in our own Solar System.
Co-author Professor Raymond Pierrehumbert (Department of Physics, University of Oxford)
JWST observations from 2024 pointed to the presence of sulphur dioxide, among other sulphur gases, high in L 98-59 d’s upper atmosphere. The team’s new models show that these gases can be created when ultraviolet light from the host star, the red dwarf L 98-59, triggers chemical reactions. At the same time, the magma ocean below acts as a massive reservoir for buffering these volatile gases, storing and releasing them over billions of years after the planet formed. This combination of deep volatile storage within its interior and ultraviolet-driven atmospheric chemistry explains the planet’s notable properties.
According to the simulations, L 98-59 d likely formed with a very large amount of volatile material and may once have looked more like a larger sub-Neptune planet. Over billions of years, it gradually shrank as it cooled and lost some of its atmosphere. Importantly, magma oceans represent the universal initial states of all rocky planets (including the Earth and Mars), so new insights into magma ocean physics can inform us about our own world and its primordial history.
Co-author Professor Raymond Pierrehumbert (Department of Physics, University of Oxford) said: ‘What’s exciting is that we can use computer models to uncover the hidden interior of a planet we will never visit. Although astronomers can only measure a planet’s size, mass and atmospheric composition from afar, this research shows that it is possible to reconstruct the deep past of these alien worlds – and discover types of planets with no equivalent in our own Solar System.’
A wealth of new data are being delivered by JWST, with more to come from the upcoming Ariel and PLATO missions. The research team intend to apply their simulations to these new measurements, using machine learning methods, to map the diversity of worlds beyond the Solar System, and make connections with their early histories. In doing so, we will learn about how planets form, how they evolve, and thereby set expectations for which might be habitable (or not).
Dr Richard Chatterjee, (University of Leeds/ University of Oxford) said: ‘Our computer models simulate various planetary processes, effectively enabling us to turn back the clock and understand how this unusual rocky exoplanet, L 98-59 d, evolved. Hydrogen sulphide gas, responsible for the smell of rotten eggs, appears to play a starring role there. But, as always, more observations are needed to understand this planet and others like it. Further investigation may yet show that rather pungent planets are surprisingly common.’
The study ‘Volatile-rich evolution of molten super-Earth L 98-59 d’ has been published in Nature Astronomy.
For more information about this story or republishing this content, please contact [email protected]
An artist’s impression of L 98-59 d in orbit around its host star, the red dwarf L 98-59. Credit: Mark A. Garlick / markgarlick.com
Oxford News
Oxford Georgian grade-II listed townhouse on the market for £2.5m
The Grade II listed property on St John Street, which is up for sale, offers more than 2,900 square feet of living space spread over four floors.
It features a large family room, a kitchen/breakfast area, large bedrooms, a west-facing courtyard garden, and a separate annexe, and is being sold with “no onward chain.”
Inside, the main house boasts four bedrooms and a reconfigured interior.
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The Georgian townhouse in Oxford (Image: Chancellors)
The lower ground floor features a wooden-floored family room, a utility room, and a modern shower room.
On the ground floor, there is a parlour room with a feature fireplace, and a kitchen/breakfast area that opens onto a walled courtyard garden.
The first floor offers two double bedrooms, one with an ensuite bathroom, while the second floor features the principal bedroom, bathroom, and a dressing room.
The annexe, accessible from the courtyard, has its own sitting room, a first-floor vaulted bedroom, and a lower ground floor bathroom.
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The Georgian townhouse in Oxford (Image: Chancellors)
St John Street, known for its Georgian-style Grade II listed terraced houses, is situated in the heart of Oxford and was developed around 1830.
The area is close to top-rated state and independent schools, including The Dragon School, Oxford High School for Girls, Cherwell School, St Edward’s School, d’Overbroeck’s College, St Philip & James School, Summerfields School, Christchurch College School, New College School, and Magdalen College School.
The property is also near the Ashmolean Museum, Oxford colleges, and the Oxford railway station.
Oxford News
Manhunt after ‘sexual assault’ at Oxford shopping centre
Thames Valley Police has released a CCTV image as it asks for the public’s help in identifying a man who may have vital information about the incident at Templars Shopping Centre in Cowley.
The reported ‘sexual assault’ happened when a woman in her 20s was inappropriately touched over her clothing at around 3pm on Tuesday, June 30.
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No arrests have been made at this time and the police has asked for anyone with any information to come forward as soon as possible.
Investigating officer PC Emily Rice said: “We are releasing this CCTV image as we believe the individual pictured may have information that could assist our investigation.
Police would like to speak to this man following the incident in Temple Cowley Shopping Centre (Image: TVP)
“If this is you, or if you recognise the person shown in the image, please contact Thames Valley Police.”
Anyone with information can make a report to the police online or call 101, quoting reference 43260331880.
READ MORE: Reports of ‘petrol bombs’ at Oxford University museum spark big police response
Alternatively, information can be provided anonymously via the independent charity Crimestoppers on 0800 555 111 or through its website.
Appeals for public help in finding individuals by the police can relate to suspects, witnesses or others who may have vital information in relation to the incident.
They do not mean the person is to blame nor do they imply guilt.
Oxford News
IKEA to permanently slash prices on hundreds of products
The scheme, which took effect on August 28, includes a wide range of furniture and home essentials.
In a statement, IKEA said: “From much-loved favourites to everyday essentials, customers can discover New Lower Prices both online and in-store, helping make it easier to create a home you love, whatever your budget.”
Among the discounted items is the KALLAX shelving unit, soon to be available for £49—down 18% from £60.
The HEMNES daybed, which functions as a sofa, single bed, double bed, and storage unit, will be reduced by 15% from £329 to £279.
In addition to these savings, IKEA is offering more than 1,000 exclusive in-store-only prices with discounts up to 25%.
The company said: “In time for cosy season, in stores nationwide, IKEA is also offering 20% off throws, bedspreads, candles, floor and table lamps, plus selected rugs, thermal curtains, seasonal duvets and cookware, from 7th September to 1st November nationwide.”
The history of IKEA
IKEA was founded in 1943 by Ingvar Kamprad when he was just 17 years old.
Originally, the company sold small goods such as pens and wallets, but in 1948, Kamprad expanded into furniture.
This was facilitated by Ingvar’s father, who gave him a small sum of money for doing well in school, which he used to set up a company.
In 1953, the company adopted flatpack furniture, solving costly transportation problems.
IKEA grew steadily throughout the 1950s in Sweden, before expanding into Denmark and Norway in the 1960s.
By the 1970s, the brand had entered markets in Australia, Austria, Canada, Germany, Hong Kong, Japan, Kuwait, the Netherlands, Singapore, and Switzerland.
The first UK store opened in Warrington in 1987, marking the start of IKEA’s growth in the British market.
Today, IKEA employs nearly 12,000 people across its 22 UK locations.
Have you bought items from IKEA before? Let us know in the comments.
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