Physical Review D

Eons After the Big Bang, and 80 Years After It Was Proposed, Dark Matter Takes Form in Andromeda

Medicine & Technology For decades now, researchers have long believed that the ever-elusive dark matter has comprised roughly 80 percent of the entire universe’s mass. But in spite of advancing technology, taking astronomers past the moon to far off comets/planets and back, researchers have not yet been able to identify the existence of dark matter in our galaxy or any other, and have not yet been able to isolate the hypothetical invisible particles in Earth labs either. But in what appears to be a strange X-ray emission from nearby galactic clusters, two independent European research teams believe that they may have found the first true dark matter known to man—and it’s not too far away either.

Could A Techni-Particle Save Us from the Universe’s Undoing?

In the preface to a new book entitled “Starmus”, published last month, Cambridge cosmologist Stephen Hawking said that if indeed the particle is the Higgs Boson, then CERN’s discovery could lead to the demise of the universe if its contents were to become unstable. But a new research analysis published this month in the journal Physical Review D, says that Hawking and the rest of the universe may need not fear, because the particle may in fact not be what it appears.

Could Large Hadron Collider Discovery Be Something Else? Researchers Look to Techni-Higgs Particles

The Higgs Boson particle has been at the center of theoretical physics debates for quite some time now, and while the elusive particle is conjectured to be at the center of every atom, giving them their mass, researchers have been hard-pressed to prove its existence. Last year, the European Organization for Nuclear Research (CERN) revealed that an anomaly discovered in the Large Hadron Collider when atoms were compounded together may have in fact been the Higgs Boson, however, new research says that they may have been mistaken. And the particle CERN found may very well be something entirely different.

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