Ten NHS staff removed over Noah Woods data breach

East Suffolk and North Essex NHS Foundation Trust says it has launched an “urgent” investigation.

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Scientists may have misread a 2-billion-year-old clue about Earth

Around 2.5 to 2 billion years ago, Earth underwent the largest chemical transformation ever recorded at its surface. Oxygen began accumulating in the atmosphere, setting in motion changes that eventually helped make possible the rise of complex organisms such as plants and animals about half a billion years ago.

As oxygen levels increased for the first time, enormous amounts of microbial material were buried beneath the seafloor. That burial trapped carbon in rocks and left behind an unusual isotopic signature. For decades, many scientists have interpreted that signature as evidence that Earth’s carbon cycle became dramatically unbalanced on a global scale.

A Famous Signal From Early Earth

Evidence supporting that interpretation has come from drill cores — long cylinders of solid rock pulled from deep underground — recovered from ancient marine sediments in Karelia, Russia, and the Francevillian Basin in Gabon. A new study led by Caltech researchers, however, is raising questions about whether the Russian evidence really records a planetwide event.

“One major debate centers on an unusual carbon-isotope signal that has often been interpreted as evidence of a worldwide environmental change,” says Nivedita Thiagarajan (PhD ’12), a senior scientific researcher at Caltech who works in the lab of John Eiler, the Robert P. Sharp Professor of Geology and Geochemistry and Ted and Ginger Jenkins Leadership Chair of the Division of Geological and Planetary Sciences. “We studied gases trapped in microscopic pockets within rocks from the Zaonega Formation in Karelia, Russia, one of the world’s oldest known fossil oil fields, and found that the carbon-isotope signal at this key site can be explained by local phenomena that occurred in a several-hundred-square-kilometer sedimentary basin rather than across the entire globe.”

Thiagarajan is the lead author of a recent paper published in Geology. The study describes how the researchers reconstructed the sequence of changes preserved in Karelia’s rocks following the first major increase in atmospheric oxygen.

Carbon isotopes — heavier or lighter forms of the element — provide information about the origins of biological material that accumulated billions of years ago. By measuring the relative amounts of these isotopes in drill cores (or carbon-isotope signals), researchers can build a record of ancient environmental change, somewhat like reading the growth rings of a tree.

An unusual carbon signal found in both the Zaonega Formation and rocks from Gabon is known as the Shunga-Francevillian event. Scientists have often pointed to it as evidence that Earth experienced a major global disruption of the carbon cycle around 2 billion years ago.

“Earth, in a way, went crazy during that time interval when oxygen appeared in the atmosphere. What we are trying to assess are the causes and consequences of Earth oxygenation,” explains Aivo Lepland, a researcher at the Geological Survey of Norway (NGU) in Trondheim and a co-author on the study. “This information is archived in the rocks, so, in order to study what happened, you have to study rocks.”

Gases Trapped for 2 Billion Years

To examine the Shunga-Francevillian event from another perspective, the researchers analyzed drill cores stored at NGU. They focused on gases sealed inside microscopic fluid inclusions within samples from the Zaonega Formation that are rich in pyrobitumen.

The Zaonega Formation was once part of a marine sedimentary basin. Pyrobitumen is an insoluble form of organic carbon that develops when buried crude oil or kerogen — a source material for natural gas — is subjected to intense heating deep below the surface.

The project took shape after Lepland arrived at Caltech for a sabbatical. He brought with him a new collection of isotope measurements from gases trapped in Zaonega rocks that had not yet been fully interpreted.

At the same time, Thiagarajan and Eiler had recently finished research measuring isotope ratios in natural gases. That work had helped them develop a broader framework for understanding how natural gas forms.

When the researchers combined the two sets of expertise and data, a different explanation for the ancient isotope signatures began to emerge.

Magma, Methane, and Microbes

The team proposes that a sheet of magma forced its way through layers of marine sediment at the Zaonega Formation, which at the time lay beneath a prehistoric ocean. Heat from the magma warmed sediments packed with organic material.

That heating generated hydrocarbons including methane and propane. The gases then moved upward through the sediment and eventually reached microbes living near the seafloor that consumed methane.

Those microbes produced biomass carrying a light carbon isotope signature, potentially explaining the unusual signal preserved in the rocks.

The temperature evidence supports this scenario. The researchers identified a large thermal gradient, with temperatures reaching approximately 350 degrees Celsius beside the magma intrusion and falling to about 72 degrees Celsius at an ancient seafloor asphalt spill roughly 300 meters higher.

“This chain of geological and biological processes can account for the unusual carbon-isotope signal recorded at the Zaonega Formation,” Thiagarajan says. “It was interesting to see that some of the same signatures that we observe in modern oil and gas basins are also there and preserved in 2-billion-year-old samples.”

The researchers emphasize that they cannot completely rule out contributions from other processes. Even so, their results indicate that the carbon isotope anomaly preserved at Zaonega was driven mainly by events within the local sedimentary basin rather than by a global disturbance.

“Because Zaonega is a reference site for the Shunga-Francevillian event, our findings raise important questions about whether it should be considered a worldwide event,” says Thiagarajan.

Testing the Theory in Gabon

The next step will be to determine whether the same explanation can account for the similar isotope signal found in Gabon.

Researchers plan to analyze samples collected through the GOE-DEEP project, co-funded by the International Continental Scientific Drilling Program. The goal is to test whether local geological and biological processes like those identified in Russia also shaped the Gabonese rock record.

In the summer of 2025, Lepland spent four months in Gabon coordinating the drilling campaign. The newly recovered cores arrived at NGU in February and are scheduled to be sampled later this year by an international research team representing 18 countries.

“Now we can really put things together by doing a similar type of study on the Gabonese rocks to compare the two sites,” Lepland says. “This is how science moves forward.”

The Geology paper is titled “Paleoproterozoic thermogenic hydrocarbon generation, Zaonega Formation, Russia.” Additional authors on the study are Florian Eichinger of Hydroisotop GmbH, a natural isotope analysis laboratory in Germany, and Anthony Prave of the University of St. Andrews in Scotland.

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Zepbound and Mounjaro may turn on the body’s calorie-burning brown fat

Tirzepatide has become an important treatment for obesity and related conditions such as diabetes, but scientists are still working to understand exactly how it affects the body. A study in mice now suggests that the drug may improve metabolism directly by activating brown adipose tissue, a form of fat that specializes in using energy.

According to the researchers, the findings provide new clues about how tirzepatide works and could help guide the development of broader treatments for obesity and other metabolic disorders.

The research was led by Marion Peyrou, Ramón y Cajal researcher at the Faculty of Biology and the Institute of Biomedicine of the University of Barcelona (IBUB), the Sant Joan de Déu Research Institute (IRSJD) and the CIBER in Physiopathology of Obesity and Nutrition (CIBEROBN).

Tirzepatide Targets Two Hormone Receptors

Tirzepatide (generic name of the drug Mounjaro) is approved for weight management in adults with obesity or overweight with comorbidities, as well as for treating poorly controlled type 2 diabetes mellitus.

Unlike some other obesity medications, tirzepatide targets the receptors for two hormonal factors at the same time: GIP and GLP-1. This dual mechanism can produce substantial weight loss, largely because the drug reduces food intake.

Researchers wanted to determine whether tirzepatide also produces metabolic changes that cannot be explained simply by eating less.

To investigate, the team examined how the drug affected different fat deposits in an experimental mouse model, since this kind of detailed tissue analysis cannot readily be performed in humans. Obese mice — fed a high-fat diet — were treated with tirzepatide.

The researchers then compared those animals with mice that did not receive the drug but were given the same amount of food. By controlling food intake this way, the scientists could distinguish changes caused directly by tirzepatide from those resulting from reduced calorie consumption.

Mounjaro Activates Calorie-Burning Brown Fat

The analysis showed that tirzepatide activated brown adipose tissue. Unlike white adipose tissue, which primarily stores fat and tends to accumulate in obesity, brown fat specializes in using energy and ‘burning’ calories from food.

“This activation is associated with an increased capacity to burn metabolic energy and with the production of batokines by brown adipose tissue, molecules that are beneficial for metabolism,” says Marion Peyrou.

The finding suggests that tirzepatide may influence metabolism in ways that extend beyond the weight loss caused by appetite suppression and reduced food intake.

“This drug not only reduces body weight, but also has beneficial effects on metabolism. Active brown adipose tissue ‘burns’ glucose and fat within the body, which would contribute to its positive effect not only in reducing body weight, but also in lowering blood glucose and fat levels, and improving metabolism,” the researcher points out.

A Broader Strategy for Treating Obesity

Scientists have long viewed brown fat activation as a potentially useful strategy for treating obesity and other metabolic diseases. However, previous efforts to activate brown adipose tissue with drugs have often been unsuccessful because of unwanted side effects, particularly those affecting the heart.

“Tirzepatide, although it activates brown adipose tissue, does not have these negative effects; on the contrary, it shows cardiovascular benefits. If our findings are confirmed in humans, it would reinforce the importance of developing therapeutic strategies that not only reduce food intake but also increase energy expenditure and brown fat activation,” explains the researcher.

The results support the idea that obesity therapies may be more effective when they target several physiological processes at once instead of focusing only on appetite.

“This could help improve weight control and reduce associated disorders, such as type 2 diabetes and other metabolic disorders,” she adds.

Toward More Personalized Obesity Treatment

A clearer picture of how tirzepatide works could also influence how drugs in this class are prescribed in the future.

“Identifying which patient profiles could benefit most, for example those with more compromised energy expenditure, would open the door to more personalized medicine, based not only on appetite or weight control, but also on overall metabolic status,” she emphasizes.

The researchers caution, however, that the findings come from mice and cannot yet be assumed to apply in the same way to people. Human and mouse metabolism can differ substantially, as can the distribution of fat tissue and responses to medications.

“As this is a study conducted on mice, we must be cautious, as there may be significant differences between species in terms of metabolism regulation, adipose tissue distribution and response to drugs. Therefore, we need more clinical evidence on the action of these drugs on fat in humans,” concludes Peyrou.

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REM sleep paradox: Dreaming may drain the brain’s energy even as fuel supply rises

The brain uses an extraordinary amount of energy compared with most other organs. Even so, it can continue processing information when energy is limited by adjusting how available resources are used. Scientists are still trying to understand how the brain manages this energy budget as it moves through different internal states.

Sleep offers a useful way to study that question. Although the body is resting, the brain remains active, especially during rapid eye movement (REM) sleep, which is closely associated with dreaming and memory processing. REM sleep is often described as “paradoxical sleep” because the body is mostly still while brain activity resembles wakefulness.

Researchers at Tohoku University have now identified another REM sleep paradox. During this stage, the apparent energy supply to the dreaming brain increases, yet levels of the energy molecule neurons directly use actually decline.

The findings were published in Communications Biology.

“Ever felt exhausted after a vivid dream?” asks Professor Ko Matsui of Tohoku University. “Sleep may appear peaceful, but the brain is highly active — especially when dreaming. We were intrigued by this paradox, and wanted to look into the scientific basis behind why dreaming is somehow tiring.”

Watching the Sleeping Brain in Real Time

To investigate what happens to brain energy during sleep, the researchers used a UV-curable resin to keep the skulls of mice transparent, allowing them to observe the brain during natural sleep.

Using wide-field fluorescence imaging, they tracked changes in brain blood volume as a sign of incoming “fuel” supply. They also measured neuronal ATP, the energy molecule that powers neurons, along with astrocytic pyruvate, a key compound that connects glucose from the blood with energy metabolism in the brain.

Non-REM sleep is well known for strong neuronal activity in the delta-band frequency, but smaller theta-band fluctuations also occur. The researchers found that these theta-band changes could predict shifts in brain blood volume several seconds later. That pattern suggests the sleeping brain adjusts its blood vessels in response to changing neuronal activity and metabolic demand.

The Brain Prepares for REM Sleep in Advance

A different pattern appeared as the brain moved from non-REM sleep into REM sleep.

About 50 seconds before the classically defined beginning of REM sleep, brain blood volume started to increase. The change began in the posterior cortex and then moved forward, pointing to a large-scale process that may prepare the brain metabolically for REM sleep.

Once REM sleep began, astrocytic pyruvate also rose. That increase was consistent with either greater availability of metabolic fuel or increased glycolytic activity in astrocytes.

But at the same time, neuronal ATP fell.

Why Does Neuronal Energy Drop During Dreams?

There are several possible explanations for this decrease in ATP.

Neurons may use large amounts of ATP during REM sleep to support memory-related synaptic reorganization, communication between the hippocampus and cortex, or broad transitions across brain circuits.

Another possibility is that the transfer of metabolic resources from astrocytes to neurons changes during REM sleep. Mitochondrial production of ATP could also shift during this stage.

Whatever the mechanism, the findings suggest that the dreaming brain may be operating under unusually high energy demands even while its fuel supply increases.

A Broader Lesson About the Brain’s Energy Economy

The results may also reveal something more fundamental about biological computation.

Unlike conventional computers, animal brains must operate within strict metabolic limits. Rather than supplying energy evenly across the brain, the nervous system may redirect resources depending on behavioral state, memory demands, and other internal needs.

“Understanding how the brain balances energy supply and consumption may help explain what makes biological intelligence so efficient,” explains lead investigator Yusuke Takahashi. “REM sleep gives us a natural example of how the brain reorganizes its energy economy to support complex internal processing.”

Sleep plays a critical role in functions such as memory consolidation and maintaining mental performance the following day. By revealing how energy supply and energy use shift during REM sleep, the research adds another piece to the puzzle of why sleep is so important not only for the body, but also for the brain.

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Survey to show ‘vital insight’ of children’s lives

Statistics Jersey says the  2026 Children and Young People’s Survey will open in October.

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‘Don’t Do It, Andy’: Why Labour MPs Were Begging The PM Not To Call An Early Election

What a difference a year makes.

Labour members will start gathering in Liverpool this weekend for their annual conference with a noticeable spring in their step.

The party now has a confirmed, if slight, lead in the opinion polls as Andy Burnham continues to enjoy a honeymoon period after replacing Keir Starmer as Labour leader and prime minister in July.

His optimistic talk of putting “hope in every heart” appears to have resonated with a beleaguered electorate weighed down by more than a decade of austerity, stagnant economic growth, rising prices and political turmoil.

The so-called “Burnham Bounce” has also coincided with a downturn in the fortunes of Reform UK, whose own poll numbers have fallen since May, when the party enjoyed election success in England, Scotland and Wales.

Investigations into the financial affairs of Nigel Farage and his party have cut through with a public who, just a few months ago, seemed to be preparing to elect a Reform government.

It is all a far cry from 12 months ago, when the Labour conference was a downbeat affair as Starmer’s government lurched from scandal to disaster.

Deputy PM Angela Rayner had been forced to quit just weeks before over her tax affairs, forcing Starmer into a clumsily-handled and deeply unpopular reshuffle.

That was swiftly followed by the sacking of Lord Mandelson as the UK’s ambassador to Washington over his friendship with the convicted paedophile, Jeffrey Epstein.

Ironically, the high point of last year’s conference for Starmer was his success in seeing off Burnham’s own failed attempt to seize the initiative.

The then mayor of Greater Manchester was relentlessly attacked by Starmer loyalists for saying in a pre-conference interview that the UK must “get beyond this thing of being in hock to the bond markets”.

Keir Starmer gives his keynote speech at last year’s Labour Party conference in Liverpool.
Keir Starmer gives his keynote speech at last year’s Labour Party conference in Liverpool.

via Associated Press

Although a chastened Burnham ended up leaving the conference early, just six months later he became MP for Makerfield and the PM-in-waiting.

Now, much of the talk going into this year’s event is not whether Burnham will become prime minister, but whether he would attempt to secure his own five-year mandate from the public by calling an early general election.

The PM sought to kill off the speculation by telling ITV Calendar on Friday that the next election will not be until 2029, the latest it can possibly be.

Nevertheless, that is unlikely to stop some from urging Burnham to go the country either next year or in 2028, should Labour’s poll lead grow.

According to the Telegraph, several of the PM’s No.10 advisers believe he should go to the country in the spring, but that was disputed by others in his inner circle.

“Utter bollocks,” said one senior Downing Street source when asked by HuffPost UK if an early election is on the cards.

“The PM is a man focused and determined to change the country. The only people raising the prospect of an early election are those conducting as a subtle-as-an-elephant Tory whispering campaign.”

Another No.10 source said reports of an early election were “worse than bollocks, it’s embarrassing clickbait”.

Those pushing an early election point to two mega-polls published in recent days which show Labour emerging from an early election as easily the largest party, ahead of the Tories and Reform.

However, in both scenarios, the party would lose its majority, leaving Burnham reliant on the support of the Lib Dems and other left-of-centre parties to get his programme through parliament.

Chris Hopkins, political research director at pollsters Savanta, told HuffPost UK: “Labour going for an early election based on these latest polls means two things: Labour loses hundreds of seats compared to 2024, and it’s an admission from Andy Burnham that he doesn’t think he can further improve Labour’s fortunes.”

Perhaps unsurprisingly, Labour MPs – many of whom have only been in the Commons for a little over two years – are less-than enthusiastic about the prospect of an snap election that would see at least 100 of them lose their seats.

One Cabinet minister said: “If I was Andy, I would be very reluctant to call an election because right now he’s got 400 Labour MPs.

“No matter that happens, if you wake up every morning and you’ve got 400 MPs and a big guaranteed majority, you’re in a good place.

“If you look at the sweep of Labour history being in this position doesn’t happen very often, so I’d be very careful about gambling with that.”

A Labour backbencher was equally clear in his opposition to an election now.

“I don’t want to hear him announce a general election,” the MP said. “I don’t think the country’s ready for it and voters certainly wouldn’t thank us for it.”

Another minister said: “The polls are simply too volatile right now to justify an early election.”

A Labour source added: “I can see why an early election would be tempting when you’re caught up in party conference.

“But the public don’t want one, and voters wouldn’t thank Andy for calling one.”

Burnham is still writing his conference speech, which he will deliver to the party faithful on Tuesday afternoon.

He has been writing it himself “in snatched moments on trains, planes and in his car,” according to one No.10 aide.

The conference slogan is ‘Hope Again’, and the PM plans to deliver a message of optimism to the country, explaining how he plans to get a solve long-standing problems like youth unemployment and the housing crisis.

“People know what the problems are facing the country, but they want to know what the government is going to do about it,” said one Downing Street insider.

“They want to be given hope about the way forward and this is the PM’s opportunity to set that out.”

But a senior Labour figure warned that the real challenges for Burnham will come when the political caravan has packed up for conference season and gone back to Westminster.

“There’s no doubt Andy will have a great conference,” he said. “It’s in Liverpool, it’s his first one as leader and he’ll make a good speech.

“But the real business will happen when he gets back to Westminster the week after. That’s when things will get real for him.

“There’s the Budget next month, defence spending, the growing threat from Russia, and his 10-year plan.

“His diagnosis of the country’s problems has been good, but voters will judge him on how he plans to fix them.

“The danger of conference is that the party gets too high on its own supply. They shouldn’t mistake the conference hall for the country, because there’s a world of a difference between the two.”

Listen to Commons People, the podcast that makes politics easy. Every week, Kevin Schofield and Kate Nicholson unpack the week’s biggest stories to keep you informed. Join us for straightforward analysis of what’s going on at Westminster.

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Andy Burnham Says The Next General Election Won’t Be Until 2029

Andy Burnham has insisted the next general election will not take place until 2029.

The prime minister moved to kill off mounting speculation that he was preparing to call a snap poll next spring.

Under parliamentary rules, the next election must take place in 2029 at the latest.

In an interview with ITV Calendar, Burnham was asked if that was when it would happen.

He said: “Well, yes, that’s that’s when the next election will be. All of this speculation on an early election, I can knock that dead.

“You know people want me, new in office, to be getting on with the job of delivering on the things that we’ve discussed in this interview rather than putting self-serving politics before that, which was what I would be doing if I call an election. I’m not going to do that.”

In a separate interview with BBC East Midlands, the PM also ruled out the chances of a general election taking place at the same time as local elections scheduled for next May.

Labour has enjoyed a boost in support since Burnham replaced Keir Starmer as prime minister in July, fuelling rumours that he is tempted to call an election to secure his own five-year mandate.

Two mega-polls published this week showed Labour winning most seats at an election held now, but they would also lose more than 100 MPs and their Commons majority.

Listen to Commons People, the podcast that makes politics easy. Every week, Kevin Schofield and Kate Nicholson unpack the week’s biggest stories to keep you informed. Join us for straightforward analysis of what’s going on at Westminster.

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5 Places A Doctor Always Brings Hand Sanitiser During Flu Season

It’s happening again. The tissues have started coming out in force on my bus rides. Friends send stuffy voice notes to apologise – “I can’t make it,” they sniff pitifully. “There’s something going round”.

Though you can catch the flu at any point in the year, it’s especially common in the colder months. Spending more time indoors with the windows shut increases the spread of disease, while lower vitamin D supplies mean our bodies are less able to fight bugs off.

The NHS recommends common-sense advice, like washing your hands often and not sharing personal items like towels with sick people, to keep colds at bay. And if you don’t have access to soap and warm water (the most effective hand-washing method), alcohol-based hand sanitiser is a great tool too.

Here, HuffPost UK asked Dr Donald Grant, a GP and senior clinical advisor at The Independent Pharmacy, where he brings hand sanitiser during flu season (and when you can leave it at home).

Where should I use hand sanitiser?

1) Public transport

This, he said, is an “obvious” pick.

“Handrails, poles, seat backs, and ticket machines are touched by hundreds of people a day, and buses and trains are often crowded and poorly ventilated in autumn and winter, giving flu viruses plenty of opportunity to spread”.

Keeping a bottle of hand sanitiser in your coat pocket or handbag gives you a chance to “clean your hands once you get off, before you touch your face, eat or check your phone”.

This transfer of germs – from hands to eyes, nose, or mouth – can make cold transmission especially likely, as it delivers germs almost directly to your mucous membranes.

2) Supermarkets

Not only are these filled with both people and things multiple people have touched, but self-service checkout screens can be a real bug-fest, too.

3) Gyms

Think of all those sweaty weights and unwiped surfaces, not to mention the pools and saunas whose warm, damp environments provide the perfect breeding ground for bacteria.

Not only that, but we breathe more heavily when working out, potentially expelling more disease-carrying saliva.

4) Cafés

Basically, Dr Greenyer said, we should bring hand sanitiser “anywhere with shared touchscreens, such as self-checkouts and cash machines”.

5) Hospitals, GP surgeries, and care homes

These places are filled with people who are 1) already likelier to be sick and 2) packed tightly together in an enclosed space. Therefore, it’s best to use an alcohol-based hand sanitiser in these places, “both to protect yourself and the vulnerable people around you”.

However, the doctor stressed that hand sanitiser “should never be used as a replacement for handwashing, as [soap and warm water] is still the most effective option for limiting the spread of bacteria”.

Where don’t we need to bring hand sanitiser?

With that said, Dr Greenyer told us that “There’s no need to sanitise constantly”.

Outdoor areas, like

  1. Parks,
  2. Open-air markets, or
  3. The high street

are much safer, he added. This is because “viruses disperse more easily in fresh air and you’re touching far fewer shared surfaces”.

The GP ended: “It’s also worth remembering that flu spreads mainly through droplets from coughs and sneezes, so good hand hygiene works best alongside other simple habits, like catching sneezes in a tissue, staying home when you’re unwell and getting the flu vaccine if you’re eligible”.

And when needed, a little bottle of hand sanitiser could help to protect you on the go.

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CERN has begun disconnecting the Large Hadron Collider

The Large Hadron Collider (LHC) stretches 27 km around and relies on thousands of magnets of different types – dipoles, quadrupoles, sextupoles, octupoles, decapoles, etc. – to steer and control its particle beams. Each type performs a specialized task.

Some of the most important are known as inner triplets. These groups of three quadrupole magnets (hence the name) sit on both sides of the LHC’s four main experiments. Their job is to focus the particle beams as tightly as possible just before the particles collide inside the detectors.

The tighter the beams are “compressed,” the greater the chance that particles will collide. That makes the inner triplets essential for increasing the LHC’s luminosity, i.e. the number of collisions that occur in a given period of time. More luminosity means more collisions, giving researchers more data to analyze.

Preparing the LHC for a New Era

A major part of the future High-Luminosity LHC (HiLumi LHC) project involves replacing the existing inner triplets with a much more powerful generation of magnets.

The work is taking place during the third long shutdown (LS3). Reently, crews cut the first magnet interconnection, formally beginning the replacement operation. CERN Director-General Mark Thomson also visited LHC Point 1 (the ATLAS experiment) to mark the milestone.

“The replacement of these magnets with the new HiLumi LHC inner triplets is crucial for the coming high-luminosity years. The first quadrupole of the new triplets should arrive in the tunnel at the start of 2029. In total, 16 cryostats and 28 cryo-assemblies will be installed – a major undertaking,” explains Jean-Philippe Tock, Head of the LS3 Coordination Team.

Magnets About 40% Stronger

The new inner triplets are the product of years of research and development. They represent a major technological advance over the niobium-titanium magnets currently operating inside the LHC.

Instead of niobium-titanium, the upgraded magnets use niobium-tin superconducting coils. This allows them to generate magnetic fields reaching 11.3 tesla, about 40% stronger than the fields produced by the current magnets.

The new equipment will be installed around the ATLAS and CMS experiments, where the increased collision rate will be especially important.

ALICE and LHCb operate differently and pursue different physics programs, so they do not need the same increase in instantaneous luminosity. Their existing inner triplets can therefore remain in place. However, those magnets will still be upgraded so that both experiments can benefit from the overall increase in luminosity.

Removing 28 Superconducting Magnets

Since September 7, CERN teams have been dismantling sections of the collider on either side of ATLAS and CMS. The goal is to remove 28 superconducting magnets (including the inner triplets) that are scheduled to be replaced.

The operation marks the end of an era for hardware that has been part of the LHC since its construction.

“Today’s event is a major milestone for CERN, especially for the HiLumi LHC project team. The current inner triplets date back to the LHC construction phase and were installed in the machine between 2005 and 2007. After nearly twenty years of operation, they will give way to a new generation of even more powerful magnets. It’s truly remarkable to witness such a handover from one generation of innovation to the next,” says Markus Zerlauth, the HiLumi LHC Project Leader.

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NHS to suspend staff suspected of snooping on patient records

There have been too many cases of staff abusing patient trust, and enough is enough, the head of the NHS in England says.

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