New Hubble data suggests mysterious expansion rate of universe

Washington, May 20 (IANS): The NASA and ESA's (European Space Agency) Hubble Space Telescope has reached a new milestone in recording the mystery of the Universe's expansion rate.

In the last three decades, Hubble has calibrated more than 40 "milepost markers" of space and time to help scientists precisely measure the expansion rate of the universe, according to the NASA.

The pursuit of the universe's expansion rate began in the 1920s and in 1998, it led to the discovery of "dark energy" - a mysterious repulsive force accelerating the universe's expansion.

The NASA said that the astronomers scanning data from several telescopes, including Hubble, found a discrepancy between the expansion rate as measured in the local universe compared to independent observations from right after the big bang, which predict a different expansion value.

Although the cause of this discrepancy remains a mystery, the Hubble data, encompassing a variety of cosmic objects that serve as distance markers, "support the idea that something weird is going on, possibly involving brand new physics", NASA said.

"You are getting the most precise measure of the expansion rate for the universe from the gold standard of telescopes and cosmic mile markers," said Nobel Laureate Adam Riess of the Space Telescope Science Institute (STScI) and the Johns Hopkins University in Baltimore, Maryland.

The expansion rate of the universe was, however, predicted to be slower than what Hubble actually sees, the NASA said.

Astronomers predict that it should be about 67.5 km per second per megaparsec, give or take 0.5 - but observations show it is around 73 km.

Given the large Hubble sample size, there is only a one-in-a-million chance astronomers are wrong due to an unlucky draw, said Riess.

Astronomers are at a loss for an explanation of the disconnect between the expansion rate of the local universe versus the primaeval universe, but the answer might involve additional physics of the universe, the team said.

Scientists hope that with the new James Webb Space Telescope they may be more able to find answers. Webb telescope, which recently launched to space is set to send back its first observations soon.



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Comment on this article

  • Michael Bapty, Duncan, BC CANADA

    Sat, May 21 2022

    Hello, Is it possible that the fundamental particles as we measure and know them at 273K, in fact, associate and present different properties if they are streamed into space at temperature closer to absolute zero? Thank you. Michael

    DisAgree Agree Reply Report Abuse

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