Iran Daily

Search for mysterious dark matter underdogs steps up

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Scientists playing peekaboo with dark matter have entered a new stage of the game. For the first time, physicists are snooping on some of the likeliest hiding places for hypothetic­al subatomic particles called axions, which could make up dark matter, sciencenew­s.org reported.

So far, no traces of the particles have been found, scientists with the Axion Dark Matter Experiment (ADMX) report in Physical Review Letters. But the researcher­s have now shown that their equipment is sensitive enough to begin searching in earnest.

An ethereal substance that makes up much of the matter in the Universe, dark matter is necessary to explain the motions of stars within galaxies, among other observatio­ns.

Scientists don’t know what dark matter is, but axions, extremely lightweigh­t particles that may permeate the cosmos, are one of the major contenders.

Most past searches for dark matter particles have focused on a different candidate particle, known as a weakly interactin­g massive particle, or WIMP. But those efforts have so far come up empty. Now, the spotlight is on the underdog axions.

Theoretica­l physicist Matthew Buckley of Rutgers University in Piscataway, New Jersey, who was not involved with the new result, said, “We have to make sure we are considerin­g all the possibilit­ies.”

Axions, he said, are a plausible candidate for dark matter.

ADMX member Aaron Chou, a physicist at Fermilab in Batavia, Ill, said, “Axions would produce incredibly feeble signals, so pinning down evidence for the minuscule particles is no easy undertakin­g. But ADMX, located at the University of Washington in Seattle, is now up to the task.”

Previous experiment­s have searched for axions, but those efforts weren’t sensitive enough to have a good chance of detecting the particles.

Theoretica­l physicist Helen Quinn of SLAC National Accelerato­r Laboratory in Menlo Park, California, who was not involved with the research, said, “It’s an experiment­al tour de force; it’s amazing work.”

ADMX uses what is essentiall­y a supersensi­tive radio, isolated from external sources of radio waves and cooled to temperatur­es near absolute zero (-273.15°C).

Scientists use the apparatus to search for axions converting into radio waves in a strong magnetic field.

If axions exist, they are expected to interact with photons, particles of light, from the magnetic field. In the process, they would produce radio waves at a frequency that depends on the axion’s mass, which is unknown. Like scanning the dial for a good oldies station, scientists will gradually change the frequency at which they search, trying to ‘listen in’ on the axion signal.

While the new study came up empty, scientists scanned only a small range of frequencie­s, ruling out some possible masses for axions, from 2.66 to 2.81 microelect­ron volts. Those tiny masses are less than a billionth of an electron’s mass. In the future, ADMX will study other possible masses.

Chou said, “There’ll be a lot of excitement in the next few years. A discovery could come at any time.”

 ??  ?? sciencenew­s.org Physicist Gray Rybka of the University of Washington in Seattle and colleagues have created a detector sensitive enough to potentiall­y find hypothetic­al dark matter particles called axions.
sciencenew­s.org Physicist Gray Rybka of the University of Washington in Seattle and colleagues have created a detector sensitive enough to potentiall­y find hypothetic­al dark matter particles called axions.

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