Austin American-Statesman

Dark matter:

- Byjohn Heilprin and Seth Borenstein

A $2 billion cosmic ray detector on the Internatio­nal Space Station has found the footprint of what could be dark matter, the substance that is believed to hold the cosmos together.

GENEVA — A$2 billion cosmic ray detector on the Internatio­nal Space Station has found the footprint of something that could be dark matter, the mysterious substance that is believed to hold the cosmos together but has never been directly observed, scientists say.

But the first results from the Alpha Magnetic Spectromet­er, known by its acronym AMS, are almost as enigmatic as dark matter itself. They show evidence of new physics phenomena that could be the strange and unknown dark matter or could be energy that originates from pulsars, scientists at the European particle physics laboratory near Geneva announced Wednesday.

The results from the detector are significan­t, because dark matter is thought to make up about a quarter of all the matter in the universe. Unraveling the mystery of dark matter could help scientists better understand the compositio­n of our universe and, more particular­ly, what holds galaxies together.

Nobel-winning physicist Samuel Ting, who leads the team, told colleagues at the European Organiza- tion for Nuclear Research, known as CERN, that he expects a more conclusive answer within months about this “unexpected new phenomena.”

The 7-ton detector, which was sent into space two years ago and has a 3-foot magnet ring at its core, is transmitti­ng the data to CERN on the SwissFrenc­h border, where it is being analyzed.

The instrument will search for antimatter and dark matter for the rest of the life of the space station — at least until 2020 — transmitti­ng data to an internatio­nal team of 600 scientists based in Geneva that is led by Ting, a physicist at the Massachuse­tts Institute of Technology.

The findings Wednesday are based on seeing an excess of positrons — positively charged subatomic particles.

Since the highly accurate AMS magnetic detector began studying cosmic ray particles in space, it has found about 400,000 positrons whose surging energies indicate they might have been created when particles of dark matter collided and destroyed each other.

“It is this level of precision that will allow us to tell whether our current positron observatio­n has a dark matter or pulsar origin,” Ting said.

 ?? EUROPEAN SPACE AGENCY ?? The Internatio­nal Space Station has a $2 billion Alpha Magnetic Spectromet­er, known as AMS, that has found the footprint of something that could be dark matter and may help scientists understand what holds galaxies together.
EUROPEAN SPACE AGENCY The Internatio­nal Space Station has a $2 billion Alpha Magnetic Spectromet­er, known as AMS, that has found the footprint of something that could be dark matter and may help scientists understand what holds galaxies together.

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