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Is Earth really surrounded by 'hairy' dark matter?

When streams of dark matter interact with planets like Earth, dense hairlike filaments form, according to new research.

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Courtesy of JPL-Caltech/NASA
This illustration shows Earth surrounded by filaments of dark matter called 'hairs,' which are proposed in a study in the Astrophysical Journal by Gary Pr茅zeau of NASA's Jet Propulsion Laboratory, Pasadena, Calif. A hair is created when a stream of dark matter particles goes through the planet. According to simulations, the hair is densest at a point called the 鈥渞oot.鈥 When particles of a dark matter stream pass through the core of Earth, they form a hair whose root has a particle density about a billion times greater than average. The hairs in this illustration are not to scale. Simulations show that the roots of such hairs can be 600,000 miles (1 million kilometers) from Earth, while Earth's radius is only about 4,000 miles (6,400 kilometers).

Dark matter could form 鈥渉airs鈥 around planets, like Earth, according to NASA.聽

The invisible, mysterious matter 鈥 which is thought to make up about 85 percent of all the matter in the universe 鈥 forms long 鈥渇ine-grained streams鈥 of particles.聽

"A stream can be much larger than the solar system itself, and there are many different streams crisscrossing our galactic neighborhood," study author Gary Pr茅zeau, a NASA scientist at the Jet Propulsion Laboratory, said in .

So what happens when these streams interact with planets?聽

Dr. Pr茅zeau made computer simulations to see what would happen when our own planet met a stream of dark matter. He found that the Earth鈥檚 gravity would actually manipulate the stream of particles into a thin, dense hairlike filament.

Ordinary matter may not be able to pass through the Earth, but dark matter sees no obstacle in the planet. The mysterious particles would pass right through Earth鈥檚 atmosphere, crust, and even its core.聽

The dark matter particles that pass through the Earth鈥檚 core would focus into a 鈥渞oot鈥 of hair. Pr茅zeau鈥檚 simulations show that the root of the hair is super dense, about a billion times more than average.聽

That dense root would end up some 600,000 miles from the surface of Earth. To put that in perspective, the moon is some 240,000 miles from Earth.聽

The 鈥渢ip鈥 of the hair would be the stream of particles that just graze the Earth鈥檚 surface. These points would likely be twice as far from the Earth as the root.聽

These hairy filaments could help scientists unlock more insights into the mystery of dark matter. "If we could pinpoint the location of the root of these hairs, we could potentially send a probe there and get a bonanza of data about dark matter," Pr茅zeau said.

Charles Lawrence, chief scientist for JPL鈥檚 astronomy, physics, and technology directorate, agreed. 鈥滵ark matter has eluded all attempts at direct detection for over 30 years. The roots of dark matter hairs would be an attractive place to look, given how dense they are thought to be,鈥 he said in the release.

Scientists are certain dark matter exists because they have observed its gravitational pull in the universe.聽

Pr茅zeau鈥檚 findings could also have important implications for planetary exploration too. His simulations reveal that the changes in density in a planet are reflected in the hairs. So as the stream of dark matter particles passes through the inner core, the outer core, the mantle, and then the crust of the Earth, 鈥渒inks鈥 appear in the hairs that correspond to those transitions.聽

If scientists figure out how to detect this information in dark matter, they could learn more about distant cosmic bodies from the mysterious matter. Those clues could help scientists understand the insides of distant bodies, their layers and perhaps the extent of oceans on icy bodies.

Pr茅zeau's paper appears this week in the聽Astrophysical Journal.

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