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Author Topic: Mysterious radio signals from space are much better test of Einstein’s General R  (Read 1727 times)

Offline ka1iic

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A new way to test one of the basic principles underlying Einstein’s theory of General Relativity using brief blasts of rare radio signals from space called Fast Radio Bursts is ten times, to one-hundred times better than previous testing methods that used gamma-ray bursts, according to a paper just published in the journal Physical Review Letters. The paper received additional highlighting as an “Editor’s Suggestion” due to “its particular importance, innovation, and broad appeal,” according to the journal’s editors.

The new method is considered to be a significant tribute to Einstein on the 100th anniversary of his first formulation of the Equivalence Principle, which is a key component of Einstein’s theory of General Relativity. More broadly, it also is a key component of the concept that the geometry of spacetime is curved by the mass density of individual galaxies, stars, planets, and other objects.

Fast Radio Bursts are super-brief blasts of energy — lasting just a few milliseconds. Until now, only about a dozen Fast Radio Bursts have been detected on Earth. They appear to be caused by mysterious events beyond our Milky Way Galaxy, and possibly even beyond the Local Group of galaxies that includes the Milky Way. The new technique will be important for analyzing the abundance of observations of Fast Radio Bursts that advanced radio-signal observatories, now being planned, are expected to detect.

“With abundant observational information in the future, we can gain a better understanding of the physical nature of Fast Radio Bursts,” said Peter Mészáros, Holder of the Eberly Family Chair in Astronomy and Astrophysics and Professor of Physics at Penn State, the senior author of the research paper. Like all other forms of electromagnetic radiation including visible light, Fast Radio Bursts travel through space as waves of photon particles. The number of wave crests arriving from Fast Radio Bursts per second — their “frequency” — is in the same range as that of radio signals. “When more-powerful detectors provide us with more observations,” Mészáros said, “we also will be able to use Fast Radio Bursts as a probe of their host galaxies, of the space between galaxies, of the cosmic-web structure of the universe, and as a test of fundamental physics.”

The impact of the new method using Fast Radio Bursts is expected to increase significantly as more of the bursts are observed, and if their origin can be established more firmly. “If Fast Radio Bursts are proven to originate outside the Milky Way Galaxy, and if their distances can be measured accurately, they will be a new powerful tool for testing Einstein’s Equivalence Principle and for extending the tested energy range down to radio-band frequencies,” Mészáros said.

Einstein’s Equivalence Principle requires that any two photons of different frequencies, emitted at the same time from the same source and traveling through the same gravitational fields, should arrive at Earth at exactly the same time. “If Einstein’s Equivalence Principle is correct, any time delay that might occur between these two photons should not be due to the gravitational fields they experienced during their travels, but should be due only to other physical effects,” Mészáros said. “By measuring how closely in time the two different-frequency photons arrive, we can test how closely they obey Einstein’s Equivalence Principle.”

More specifically, Mészáros said the test that he and his coauthors developed involves an analysis of how much space curvature the photons experienced due to massive objects along or near their path through space. He said, “Our test of Einstein’s Equivalence Principle using Fast Radio Bursts consists of checking by how much does a parameter — the gamma parameter — differ for the two photons with different frequencies.”

Mészáros said his research team’s analysis of the less-than-a-dozen recently detected Fast Radio Bursts “supersedes by one to two orders of magnitude the previous best limits on the accuracy of the Einstein Equivalence Principle,” which were based on gamma rays and other energies from a 1987 supernova explosion, supernova 1987A. “Our analysis using radio frequencies shows that the Einstein Equivalence Principle is obeyed to one part in a hundred million,” Mészáros said. “This result is a significant tribute to Einstein’s theory, on the hundredth anniversary of its first formulation.”

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http://wattsupwiththat.com/2016/01/05/mysterious-radio-signals-from-space-are-much-better-test-of-einsteins-general-relativity/
73 Vince
KA1IIC

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Fansome

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An historical aside, told to me by my old friend Richard Feynman:

There once was a lady from Bright
Who traveled much faster than light
She started one day, in a relative way
And returned on the previous night!

Offline Terry

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Al, I first saw that limerick in "1-2-3 Infinity" by George Gamow. c 1953. One of my favorite limericks from one of my favorite books.

And I once knew a guy that had Dr. Feynman as a professor at Cal Tech. Also a great man and I can recommend his books, "Surely Your Joking, Mr. Feynman!" and "More SYJ". Autobiographical and great reads.

Vince, Mészáros didn't mention a QSL. No QSL it didn't happen. :)
QTH Florida's Treasure Coast, near Stuart 100 mi N of Miami Grid locator EL97uf
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73,
Terry

Offline ka1iic

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I collect anything by Dr. Feynman... his books, recorded lectures etc etc  That man had such a wonderful way of making a topic understandable...  A very rare talent indeed... I only had one Prof like that and thank goodness I did because we were doing some concepts of math that could easily cause 'burn out'... RIP Dr. Page.  And of course Dr. Feynman...

If more educators were like them we would be much farther along today than we are.

 
73 Vince
KA1IIC

"If you can't be anything, you can at least be annoying"

Troy, Ohio. 20m Vertical & low long wire E/W, Yaesu FT-187ND, SDRplay 2, Ratt Shack 2 meter rig, and other little bits of electronics I'm not talking about, homebrewed and otherwise... so there bleech!

Offline Terry

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I needed a math prof like that. Had a couple of physics and engineering profs that were particularly good. Two things I learned: watch out for any course labeled "Intorduction to" or "Elementary" as in "Introduction to Modern Physics" and "Elementary Differential Equations.
(one of the great profs taught that physics course, thank goodness)
QTH Florida's Treasure Coast, near Stuart 100 mi N of Miami Grid locator EL97uf
Equipment: Kenwood TS-480SAT, R-600, Yaesu FT-857D, R. S. SW portable (Sangean), R.S. Pro-106 Scanner 25-1300 MHz, HyGain 18AVQII, M2 6M 3 el beam, Misc verticals and dipoles
73,
Terry

 

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