Showing posts with label LHC. Show all posts
Showing posts with label LHC. Show all posts

Damage to atom smasher forces two-month halt

  • September 21, 2008 - 10:27AM

The world's largest atom smasher - launched with great fanfare earlier this month - has been damaged twice and will be out of commission for at least two months, its operators said today.

CERN, the European Organisation for Nuclear Research, said a large amount of helium had leaked into the 27km circular tunnel deep under the Swiss-French border that houses the Large Hadron Collider.

The massive collider began operating on September 10 to the delight of physicists around the world, flinging protons around the circle at nearly the speed of light. But it had to be shut down 36 hours later due to a failure of an electrical transformer.

That was repaired, but CERN said a second failure took place at midday yesterday in the last section of the tunnel to undergo testing at high current, causing the large helium leak.

CERN spokesman James Gillies said the latest incident was several kilometres from the earlier damage. It is considered much more time-consuming to repair than the first malfunction.

"Preliminary investigations indicate that the most likely cause of the problem was a faulty electrical connection between two magnets, which probably melted at high current leading to mechanical failure," CERN said.

It said the sector will have to be warmed up for repairs to take place, which will require a minimum of two months down time for the collider.

Such faults are common in colliders designed for use at room temperature, and the repair time would be a matter of days, Gillies said. What will slow it down for the LHC is the time it will take to warm up the section and then cool it down.

The LHC operates at near absolute zero, colder than outer space, for maximum efficiency.

Gillies said it would take "several weeks minimum" to warm up the sector.

"Then we can fix it," Gillies said. "Then we cool it down again."

The $US10 billion ($12.5 billion) particle collider, in the design and construction stages for more than two decades, is the world's largest atom smasher. It fires beams of protons from the nuclei of atoms around the tunnels at nearly the speed of light.

It then causes the protons to collide, revealing how the tiniest particles were first created after the "big bang", which many theorise was the massive explosion that formed the stars, planets and everything.

CERN said on Thursday it had shut the collider a week ago after a successful startup that had beams of protons circling clockwise and counterclockwise in the collider.

That shutdown was caused by the failure of an electrical transformer which handles part of the cooling, CERN said. That transformer was replaced this week and the machine was lowered back to operating temperature to prepare for a resumption of operations.

The CERN experiments with the particle collider hope to reveal more about "dark matter", antimatter and possibly hidden dimensions of space and time. They could also find evidence of a hypothetical particle - the Higgs boson - which is sometimes called the "God particle" because it is believed to give mass to all other particles, and thus to matter that makes up the universe.

Smaller colliders have been used for decades to study the makeup of the atom. Scientists once thought protons and neutrons were the smallest components of an atom's nucleus, but experiments have shown that protons and neutrons are made of quarks and gluons and there are other forces and particles.

The LHC provides much greater power than earlier colliders.

Its start came over the objections of some who feared the collision of protons could eventually imperil the earth by creating micro black holes - subatomic versions of collapsed stars whose gravity is so strong they can suck in planets and other stars.

CERN and leading physicists maintain the project is safe.

AP

Hackers penetrate Hadron Collider network

From The Age:
September 14, 2008 - 9:21AM

Hackers claim they have broken into the computer system of the Large Hadron Collider, the mega-machine designed to expose secrets of the cosmos.

A group calling itself the Greek Security Team left a rogue webpage mocking the technicians responsible for computer security at the giant atom smasher as "schoolkids", The Times and Daily Telegraph reported.

The hackers vowed they had no intention of disrupting the experiment at the European Organisation for Nuclear Research (CERN) on the Swiss-French border, they just wanted to highlight the flaws in the computer system's security.

"We're pulling your pants down because we don't want to see you running around naked looking to hide yourselves when the panic comes," they wrote, according to the Daily Telegraph.

The hackers claimed to have gained access to a website open to other scientists on Wednesday as the LHC passed its first test with flying colours, the reports said.

They appear to have tried to gain access to the computer system of the Compact Muon Solenoid Experiment, one of the four detectors that will be analysing the progress of the experiment.

James Gillies, a spokesman for CERN, told The Times: "We don't know who they were but there seems to be no harm done. It appears to be people who want to make a point that CERN was hackable."

Scientists hailed the success of the start of the experiment on Wednesday in the Large Hadron Collider, the 27-kilometre circular tunnel in which parallel beams of protons will be accelerated to nearly the speed of light.

Superconducting magnets will then steer the counter-rotating beams so that strings of protons smash together in four huge laboratories, fleetingly replicating the conditions that prevailed at the "Big Bang" that created the Universe 13.7 billion years ago.

AFP

Atom-smasher may prove 'God particle'

from the age :

Deborah Smith, Science Editor

September 9, 2008

IT HAS been heralded as a monumental creation that will reveal the fundamental nature of the universe, but also as a doomsday machine that could destroy the planet.

The world's biggest instrument - a $9 billion atom-smasher that will recreate conditions not seen since a split second after the big bang 14 billion years ago - will be switched on tomorrow.

Holding their breath will be Australian scientists who have helped design and construct one of the huge detectors in the device that will search for an elusive subatomic particle, dubbed the "God particle".

A physicist from the University of Sydney, Kevin Varvell, said he was excited that after 20years of planning, the instrument - called the large hadron collider - would begin operation to expore the nature of matter.

"At last we can test some of our ideas about what we are made of. It will help answer some big and deep questions," he said.

Built 100 metres below the Swiss countryside by CERN, the European Organisation for Nuclear Research, the collider will fire two beams of particles in opposite directions around a 27-kilometre ring at almost the speed of light.

When the beams collide head on, they will create fireballs and showers of subatomic debris never witnessed before.

Dr Varvell said the impacts could produce man-made mini black holes, reveal that the universe has extra dimensions that are normally curled up, and throw light on the nature of the mysterious dark matter which makes up most of the cosmos.

It should also reveal whether the Higgs boson, or God particle, exists or not.

According to the standard theory of matter, the boson gives everything its mass, and the Australian team helped design the 7000-tonne ATLAS detector in one of the cathedral-sized caverns that will look for it.

Dr Varvell said if the boson was not spotted,"that would tell us something very profound as well".

New theories about the underlying physics of the universe would have to be developed, he said.

Dr Varvell will give a lecture on the collider with Dr Karl Kruszelnicki at the University of Sydney on Wednesday.

Colliding with destiny


* Ian Sample
* September 10, 2008

One of the most significant scientific experiments in history begins today - and it may help unravel the mysteries of the universe.

BENEATH the rural tranquillity of the Geneva countryside, where ramshackle sheds dot the wide-open fields, scientists are getting ready for a trip into the unknown. Here, under 100 metres of rock and sandstone, lies the biggest, most complex machine humans have ever built, and today they will finally get to turn it on.

Scientists involved in a historic 'Big Bang' experiment to begin this week hope it will turn up many surprises about the universe and its origins.

For CERN, the European nuclear research organisation, it will mark the end of a lengthy wait and the beginning of a new era of physics. Over the next 20 years or so, the $9.6 billion machine will direct its formidable power towards some of the most enduring mysteries of the universe.

The machine will search for extra dimensions, which could be curled up into microscopic loops. It might produce "dark matter", the unknown substance that stretches through space like an invisible skeleton. And it will almost certainly discover the elusive Higgs boson, which is better known by its wince-inducing moniker, the God particle.

At least that is the hope. For the machine to work, a dizzying number of electronic circuits, computer-controlled valves, airtight seals and superconducting magnets must all operate in concert.

The machine is called the Large Hadron Collider (LHC), and when working at full tilt it will drive two beams of particles in opposite directions around a 27 kilometre ring at 99.9999991% of the speed of light. Every second each of the beams will complete 11,245 laps of the machine.

At four points around the ring the beams will be steered into head-on collisions, causing the particles to slam into one another with enough energy to recreate in a microcosm the violent fireball conditions that existed one-trillionth of a second after the Big Bang.

Giant detectors will then scrutinise the shower of subatomic debris in the hope of finding something no one has ever seen before. The largest detector, named Atlas, sits in a cavern and is about 45 metres long, more than 25 metres high, and weighs about 7000 tons. It is about half as big as the Notre Dame Cathedral in Paris.

"This is a once-in-a-generation kind of machine, and we really don't know what we will find," says Brian Cox, a physicist at Manchester University who works on Atlas. "It's like going to Mars. You know you're going to find something new, because you're going where no one has been before."

And physicists everywhere will be watching - from control rooms and auditoriums on the scene, or on webcasts. The Fermi National Accelerator Laboratory, or Fermilab, outside Chicago, will even hold a "pyjama party" for staff members and journalists to watch the events live from a remote control room.

But physicists' excitement aside, the awesome power of the LHC has prompted a flurry of alarmist fears that the machine might create a black hole that would swiftly consume the planet. In the run-up to the machine switching on, the laboratory has received a steady stream of calls from people wanting reassurance, or simply asking the scientists to stop. Two attempts to stop the machine through the courts were dismissed. Scientists say far more energetic collisions happen regularly in nature, when cosmic rays strike stray particles in space.

The doomsday claims have also been vigorously rebutted by a series of safety reports and studies, the most recent of which was published last week in The Journal of Physics G: Nuclear and Particle Physics, a peer-reviewed journal.

The director-general of CERN, Robert Aymar, said in a news release: "The LHC is safe, and any suggestion that it might present a risk is pure fiction."

And besides - the beams, for now, will only be circulating, not colliding.

Although CERN has already conducted some basic tests with its machine, today will be the first attempt to get a beam of protons circulating inside it.

"If the beam goes all the way round on the first go, that would be quite amazing. It's never happened in the history of particle colliders," says CERN's James Gillies.

If the test is successful, scientists may try to send the beam around in the opposite direction, though first collisions are not expected until next month. They expect to spend a few months getting to grips with the machine before putting it to work in earnest.


CERN was set up in 1954 by European scientists who had won the ear of government through their nuclear work during World War II, and who recognised that progress in their subject would require equipment too expensive for any single European country to fund.

CERN, therefore, became one of Europe's first joint ventures and now has 20 member states.

The organisation employs about 2500 people. Some 8000 visiting scientists - half of the world's particle physicists - come to CERN for their research. The laboratory sits astride the Franco-Swiss border near Geneva and is famously the birthplace of the World Wide Web.

The LHC is perhaps the most significant milestone in the research organisation's history. It is likely to be the world's premier accelerator for at least the next 15 years.

In The Daily Telegraph, Lord Martin Rees, Astronomer Royal and president of the Royal Society, writes that some scientific challenges are so great that "they demand a massive enterprise, in which thousands of researchers combine their efforts to achieve a common goal".

"This happened in astronomy with the Hubble Telescope, and in biology with the human genome project. And now it is happening in physics," Rees writes. "The Large Hadron Collider ... will be the largest experiment in human history."

The potential for discovery is breathtaking.

"People might think we already know a lot about the way things work, but the wheels are coming off our understanding of the universe. We can confidently say that 95% of the universe is made up of stuff we don't understand," Cox says.

Only 5% of the universe is made of matter scientists understand. A further 25% is so-called "dark matter", which clusters around galaxies, and the remaining 70% is even more enigmatic "dark energy", which drives the expansion of the universe.

In recent weeks, there has been a blitzkrieg of papers and predictions on what might or might not be discovered when protons are accelerated to energies of 7 trillion electron volts - seven times higher than at Fermilab, currently the most powerful particle collider in the world - and smashed together.

One of the first discoveries that could emerge is proof of a theory known as supersymmetry. According to the theory, every particle in the universe has a slightly overweight but invisible twin. One of these, called the neutralino, is a leading candidate for dark matter, and could be made as soon as the machine performs its first collisions. The mysterious dark matter provides the invisible scaffolding of galaxies and the cosmos.

The LHC may also see the emergence of the Higgs boson, which is hypothesised to endow other particles with mass.

Some optimists hope the colliding protons may reveal surprises about the nature of space itself. Theories suggest that space is actually 10-dimensional, or that there may be other entire universes "alongside" ours, like sheets of paper separated by less than a millimetre, but separated forever because they are in different dimensions.

But the world should not hold its breath for exciting news. Most of the effects being sought involve very rare events - maybe only one collision in a billion. Huge volumes of data will need to be collected and sifted before any firm claims emerge. This "big science" entails a style of work ill-suited to mavericks and individualists, but it's an essential complement to the contribution of the swarm of theorists ready to pounce on any novel phenomenon that emerges.

For the 10,000 scientists and engineers involved in the project this is the culmination of more than 20 years of work.

Agencies

LINK

See the live webcast at:

lhc-first-beam.web.cern.ch