Showing posts with label tests. Show all posts
Showing posts with label tests. Show all posts

Wednesday, June 15, 2011

Tests 'reject new particle claim'

10 June 2011 Last updated at 14:04 GMT By Paul Rincon Science reporter, BBC News Tevatron particle accelerator The Tevatron was, until the advent of the LHC, the highest-energy accelerator in the world Cross-checks on data that hinted at the discovery of a new sub-atomic particle have failed to find support for the observation.

In May, researchers working on the CDF experiment at the US Tevatron "atom smasher" announced they had detected tantalising hints of an unanticipated particle.

But independent checks using a separate experiment called DZero have not been able to corroborate the findings - dealing a blow to the idea.

A confirmation would have heralded one of the most radical changes to physics in years.

The DZero result comes several days after a CDF team member presented updated results showing the signal had strengthened - not disappeared - after analysing about double the amount of data.

Scientists from both Tevatron experiments will now have to "compare notes" with the aim of reaching a consensus.

The Tevatron is the only major competition to Europe's Large Hadron Collider machine. It is operated by the Fermi National Accelerator Laboratory (Fermilab), based in Batavia, Illinois.

Independent working

The independent check by DZero is revealed in a seminar at Fermilab on Friday. A paper describing the findings is set to be published on the Arxiv repository, and has been submitted to the Physical Review Letters journal for review.

Continue reading the main story Two-pence piece Particle physics has an accepted definition for a "discovery": a five-sigma level of certaintyThe number of sigmas is a measure of how unlikely it is that an experimental result is simply down to chance rather than a real effectSimilarly, tossing a coin and getting a number of heads in a row may just be chance, rather than a sign of a "loaded" coinThe "three sigma" level represents about the same likelihood of tossing more than eight heads in a rowFive sigma, on the other hand, would correspond to tossing more than 20 in a rowA five-sigma result is highly unlikely to happen by chance, and thus an experimental result becomes an accepted discoveryProfessor Stefan Soldner-Rembold, spokesperson for the DZero collaboration, told BBC News: "We looked at the data-set that CDF originally published... We inject a signal in our simulation which looks like what we would have observed if CDF had seen the real thing.

"We analysed the data accordingly and, as observed, there is no enhancement. We can exclude something like what CDF observed to a relatively high probability."

Dr Giovanni Punzi, co-spokesperson for the CDF collaboration at Fermilab, told BBC News: "It has taken a step forward and a step back. But [DZero] has used only half of the data we currently have. So they are now showing a result with our old sample size."

When BBC News spoke to Dr Punzi, who is from the University of Pisa, Italy, he was responding to rumours that DZero had seen a "smaller excess" and had not yet seen DZero's results.

The CDF team was analysing data from collisions between protons and their anti-matter counterparts antiprotons. In these collisions, particles known as W bosons are produced, along with a pair of "jets" of other particles.

It was in these jets that the unexpected "bump" in the team's data came to light, potentially representing a particle that the widely accepted theory of particle physics - known as the Standard Model - does not anticipate.

As such, confirmation of the CDF results would have signalled a radical change in physics. But researchers stress the finding is definitely not the elusive Higgs boson - which explains why other particles have mass. The Higgs is the last missing "jigsaw piece" needed to complete the Standard Model.

D0 detector DZero is a multi-purpose detector based at the Tevatron facility

When CDF's result was first announced, it was said to be at the "three sigma" level of certainty. This means there is roughly a 1 in 1,000 chance that the result is attributable to some statistical fluctuation in the data.

At a conference at Blois, France, on 30 May, Dr Punzi, announced that after analysing much more data, the "excess" was just below a five sigma level of certainty.

Five sigma means there is about a one-in-one-million chance that the "bump" is just a fluke and is the level generally required for a formal discovery.

Theorists have already weighed in on the CDF data peak. According to one school of thought, it could have provided support for a fifth fundamental force of nature known as "technicolour".

Technicolour is similar to the "strong force", which binds particles known as quarks together inside the nuclei of atoms. It could also give particles their mass - making the Higgs boson unnecessary.

Top stuff?

Other researchers suggested an effect called "top background" could explain away the "bump" seen by CDF.

They suggested that researchers might have underestimated the number of top quarks - a fundamental heavy particle - being produced at the Tevatron and that this could have yielded the data peak. But Dr Punzi said this idea had now been tested and ruled out.

Professor Soldner-Rembold, from the University of Manchester, UK, explained: "This is why it is good to have two experiments [at the Tevatron].

"What we see here is the scientific process at work. If one experiment sees something, another one has to verify it, and currently, we cannot verify it."

US Department of Energy budget cuts are forcing the Tevatron to shut in September this year; by the time the machine accelerates its last particles, it will have been operating for some 28 years.

The decision to close the facility was taken despite the recommendations of a scientific panel that the Tevatron's lifetime be extended by three years in order to continue hunting for the Higgs boson.

Paul.Rincon-INTERNET@bbc.co.uk


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Saturday, May 21, 2011

UK tests deep water oil leak plan

19 May 2011 Last updated at 17:29 GMT An RAF Hercules joins the oil spill exercise An RAF Hercules sprayed water to simulate dispersant in the oil spill exercise west of Shetland More than 100 people have taken part in an oil spill exercise off Shetland, one of the biggest of its kind in the UK.

It followed concerns raised by the Gulf of Mexico spill in April 2010, when a blast at the Deepwater Horizon rig caused a massive oil leak.

Exercise Sula tested how authorities would react to and deal with a major deep water spill in the UK.

It was led by the Maritime and Coastguard Agency and the Department of Energy and Climate Change.

The clean-up exercise west of Shetland was hampered by rough seahs and strong winds gusting up to 50mph.

Greenpeace protest

Only one of several booms - used to contain spills - was deployed in the simulation, while an RAF Hercules was also used to break up the oil.

Last year, the UK government set up a planning group for the exercise, involving the emergency services, government agencies, the local authority and the oil industry.

Continue reading the main story image of David Shukman David Shukman Environment & science correspondent, BBC News

Just the weather to test the claims of the oil industry that it can cope with a spill.

Here at Shetland's massive Sullom Voe oil terminal, the winds are vicious, squalls strike without notice and everyone keeps rushing for shelter.

Stretches of bright orange boom have been laid in the bay but not as much as planned because the gusts would blow them away.

Imagine doing this for real in mid winter. Seeing the oil vessels engaged on the exercise takes me back to the Gulf of Mexico last summer, the nightmare spill that is in everyone's minds today.

That challenged BP. Now in these wild waters, it is Chevron pretending it has lost control of a deep well. They keep stressing that they are not complacent. In these conditions, you cannot be.

A giant Hercules plane has just flown by spraying water to simulate dispersant. Who knows where the wind has blown it?

US oil giant Chevron, which is drilling for oil in the area, agreed to join the simulation before its staff were targeted by environmental protesters from Greenpeace last September.

The campaigners attached themselves to the Stena Carron, a drilling ship off Shetland operated by Stena Drilling and on contract to Chevron.

They then attached a survival pod to the ship in a stunt aimed at highlighting the dangers of deep water drilling.

Exercise Sula director Murray Milligan said: "The UK's offshore safety and environmental regulatory regime is one of the most robust in the world and the industry's record is strong.

"Nevertheless, it's right that we continue to test our response capability.

"Exercise Sula will test the participants' response to an unfolding scenario, involving the uncontrolled release of hydrocarbons into the sea from a deep water well operated by Chevron Upstream Europe at the Cambo well site, 86 miles west of Shetland.

"This exercise will give the UK an opportunity to assess its response capability to a release from a wellhead 1,000m below the surface.

"Because the exercise scenario involves the weather and tides forcing the oil to land onshore, we'll also have the opportunity to test a shoreline response in Shetland."

Eleven people were killed in the Deepwater Horizon rig explosion last year, and in the months that followed more than 200 million gallons (780 million litres) of oil flowed into the Gulf of Mexico from the well.

It polluted hundreds of miles of coastline and became the worst US oil spill in recent history.


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