Researchers use high-tech machines to detect mysterious dark matter

By: Associated Press | Wednesday, August 8, 2007 7:14 PM PDT

LOS ANGELES -- In deep underground laboratories around the globe, a high-tech race is on to spot dark matter, the invisible cosmic glue that's believed to keep galaxies from spinning apart.

Whoever discovers the nature of dark matter would solve one of modern science's greatest mysteries and be a shoo-in for the Nobel Prize. Yet it's more than just a brainy exercise. Deciphering dark matter -- along with a better understanding of another mysterious force called dark energy -- could help reveal the fate of the universe.

Previous hunts for the hypothetical matter have turned up nothing, but that has not deterred some two dozen research teams from plumbing the darkness of idled mines and tunnel shafts for a fleeting glimpse.

Dark-matter detecting machines today are more powerful than previous generations, but even the best has failed so far to catch a whiff of the stuff. Many teams are now building bigger detectors or toying with novel technologies to aid in the hunt.

"We're in the golden age of dark matter search," said Sean Carroll, a California Institute of Technology theoretical physicist who has no role in the experiments. "It's looking good for some breakthroughs to happen."

Scientists admittedly are still in the dark about dark matter. The prevailing theory is that it's made up of tiny, exotic particles left over from the Big Bang some 13.7 billion years ago. Dark matter, thought to make up a quarter of the universe's mass, gets its name because it doesn't give off light or heat. Astronomers know it exists because of its gravitational tug-of-war with stars and galaxies.

Knowing that dark matter exists is a far cry from knowing what it is. Most experiments are searching for theoretical particles called WIMPS -- or weakly interacting massive particles -- the leading dark-matter candidate.

The underground custom-built machines are all waiting for the rare moment when a WIMP hits the atomic nucleus and causes an elastic recoil. Experiments have to run below ground to prevent cosmic rays from interfering with the results.

Dark matter researcher Neil Spooner of Sheffield University in England sums it up this way: "You have a needle in a haystack and you're trying to remove the hay. You need better technology to pull out the event you're looking for and reject the rubbish."

Subterranean experiments are humming in an idled iron mine in Minnesota and in caverns in Canada, England, France, Italy, Japan and Russia. Last month, the National Science Foundation chose the defunct Homestake gold mine in South Dakota to be the site of one of the largest and deepest labs of its kind in the world -- bigger than six Empire State Buildings stacked below ground.

The competition is cutthroat and physicists spar over which technology works best.

The front-runner for the past several years, called CDMS for cryogenic dark matter search, uses ultracold silicon and germanium crystals each the size of a hockey puck to sift out telltale vibrations of a WIMP collision. Newer contraptions use noble gas such as xenon or emerging technologies like superheated liquid bubble chambers.

"There's no perfect dark matter experiment or detector. All of them have their quirks and limitations," said Juan Collar, a particle physicist at the University of Chicago and part of a team called COUPP.

Scientists realize they may be in for a reality check.

"It's possible that no matter how big of an experiment you build, you may not find anything," said Steve Ahlen of Boston University, who along with collaborators from the Massachusetts Institute of Technology and Brandeis University, is building a prototype that will be placed underground next year in a yet to be determined location.

There have been false alarms. In 2000, Italian scientists working in an underground lab near Italy's Gran Sasso mountain range claimed to have detected a dark matter signal. But no one has been able to reproduce the result and the claim is not widely recognized in the scientific community. The Italian researchers have since been working on a second-generation detector and expect to present new results next year.

This spring, a rival group led by Columbia University's Elena Aprile, who also works in Gran Sasso, shocked her peers by announcing at a science meeting that her liquid gas project called XENON10 is more sensitive and rejects more background noise than the CDMS detector.

"The more sensitivity you have, the closer you get to the truth," Aprile said.

CDMS spokesman Bernard Sadoulet of the University of California, Berkeley, said it helps to have more than one technology searching for dark matter to cross-check results. He added that his team has been taking data with its scaled-up detector since last year and expects to regain the sensitivity lead.

The quest for dark matter dates back to the 1930s when Swiss astronomer Fritz Zwicky of Caltech, peering through his telescope, determined that there's missing mass in the universe by observing celestial motions. The idea took a while to catch on, but is now the subject of an intense underground hunt.

Dark matter detectors are expensive to build and even pricier to upgrade and operate. Many projects are funded by a mix of sources. For example, the National Science Foundation has invested about $21 million since fiscal year 2000 on six projects including CDMS and XENON10.

Scientists are also searching for dark matter in space. NASA next year plans to launch the GLAST telescope to study gamma ray bursts that may be created by dark matter collisions. And it's possible researchers will create dark matter in the lab -- like at the Large Hadron Collider buried beneath the Swiss-French border -- even before they confirm it in the cosmos or under ground.

Not all dark matter searches are betting their money on WIMPS.

The Axion Dark Matter Experiment at Lawrence Livermore National Laboratory has been searching for another theoretical particle called axions. The first phase of the project ended in 2003 with no signal. It recently got the green light from the Energy Department to upgrade the experiment.

Just how long the dark matter hunt will go on is anybody's guess.

"The crystal ball is fuzzy," said physicist Leslie Rosenberg, a co-spokesman of the axion project, adding that, "The nature of dark matter will be revealed."

On the Net:

Dark matter experiments: http://lpsc.in2p3.fr/mayet/dm.php

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Jack wrote on Aug 9, 2007 2:34 AM:Maybe they'd find it if they turned on the lights in those dark caves! Of course if and when they do I've got to wonder what they'll do with that knowledge, find a cure for cancer or creat a better mouse trap? It never ceases to amaze me how much time, energy and money is devoted to things so unimportant to the needs of our time. There are a few zillion people on earth without shoes and these guys, no doubt with their government's money, are trying to find something that may not even exist. What a waste of one['s life. I hope their mom's are proud. Guess all those years in college wasn't wasted after all!

Doc wrote on Aug 10, 2007 5:53 AM:Yup, or cancel the space program which gave us all of the monitoring equipment used in hospitals. Basic research is never wasted; one just isn't sure what might pop up to benefit us all. Define Luddite, jack.

afzal wrote on Aug 11, 2007 12:11 AM:Well I sincerely hope that all these experiments come out with some kind of result that justifies the investment of time, money, energy and human capital in search of dark matter.

Irvin wrote on Aug 11, 2007 6:04 PM:Wouldn't it be a big surprise to find out that "cosmic glue" of dark matter turned out to be God?

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