• Email Us: [email protected]
  • Contact Us: +1 718 874 1545
  • Skip to main content
  • Skip to primary sidebar

Medical Market Report

  • Home
  • All Reports
  • About Us
  • Contact Us

Are Our Observed Black Holes Concealing Wormholes?

November 17, 2023 by Deborah Bloomfield

The known universe is full of exciting things like black holes, hypernovas, and merging neutron stars. All of those, however, look tame compared to items physicists think might exist but have yet to find. Perhaps chief among these are wormholes, which theoretically join parts of space and time, allowing those who enter them a shortcut to distant locations.

The possibility of wormholes came as a huge relief to science fiction writers, otherwise cut off from the star systems they wished to explore by physical laws preventing faster-than-light travel. Many physicists are skeptical they exist, or at least that three-dimensional objects could pass through them unscathed, but the mere chance was enough for writers to drive a spaceship, or at least a novel, through.

Advertisement

As telescopes advance, however, a question becomes more troubling: if wormholes are real, why haven’t we found any? Four Bulgarian physicists have proposed an answer in Physical Review D: maybe we have and just haven’t recognized them.

The vast majority of black holes we have identified are known either from their gravitational effects on stars around them, or from the jets of material shooting out of their accretion disks. If any of these were actually wormholes, it’s unlikely we would know. However, the Event Horizon Telescope Collaboration’s observation of the polarization around M87* and its follow-up on Sagittarius A* are a different matter. In these cases, we saw the shadow of the object itself against its event horizon, and might hope to notice something if we were really looking at a wormhole.

The possibility of wormholes is sufficiently exciting to physicists that 12 papers have been posted to ArXiv.org exploring the concept just since the start of November. However, as Petya Nedkova of the University of Sofia and co-authors note, we don’t know what they would look like. 

The paper seeks to address that and concludes that, seen at high angles, wormholes would look like nothing we have seen. For small inclination angles, however, the authors think a wormhole would show “a very similar polarization pattern” to a black hole. Consequently, M87*, seen at an estimated angle of 17°, could be a wormhole and we wouldn’t know.

Advertisement

That’s not to say we are doomed to not be able to tell wormholes from black. “More significant distinctions are observed for the strongly lensed indirect images, where the polarization intensity in the wormhole spacetimes can grow up to an order of magnitude compared to the Schwarzschild black hole,” the authors write. The lensing referred to here is not from a massive object between us and the hole creating a gravitational lens. Instead, it is from the paths of photons being distorted by the immense gravitational field of the hole, causing them to complete a partial loop around the hole before heading toward us.

The situation is complicated further if we assume, as the authors do, that material or light could pass in either direction through a wormhole. If this is the case, they expect that “signals from the region beyond the throat are able to reach our universe.” These will change the polarized image of the disk we see around the hole, with the light emerging from elsewhere having distinct polarization properties. This could provide what the authors call “a characteristic signature for the detection of wormhole geometry”.

Besides the interest in finding wormholes to confirm they exist, and the fact they might make interstellar travel possible, it’s a good idea to be able to distinguish them from black holes before getting too close. “If you were nearby, you would find out too late,” Nedkova told New Scientist. “You’ll get to know the difference when you either die or you pass through.”

The authors acknowledge their conclusions are drawn from a “simplified model of a magnetized fluid ring” orbiting the black hole. More advanced models may reveal differences that could be used to distinguish wormholes from black holes in other ways.

Advertisement

The paper is published in Physical Review D.

An earlier version of this article was published in November 2022.

Deborah Bloomfield
Deborah Bloomfield

Related posts:

  1. Paris ramps up security as jihadist attacks trial starts
  2. Cricket-‘Western bloc’ has let Pakistan down, board chief says
  3. Ancient Bison Found In Permafrost Is So Well Preserved Scientists Want To Clone It
  4. Where Inside Us Do We Feel Love?

Source Link: Are Our Observed Black Holes Concealing Wormholes?

Filed Under: News

Primary Sidebar

  • There Are Just Two Places In The World With No Speed Limits For Cars
  • Three Astronauts Are Stranded In Space Again, After Their Ride Home Was Struck By Space Junk
  • Snail Fossils Over 1 Million Years Old Show Prehistoric Snails Gave Birth to Live Young
  • “Beautiful And Interesting”: Listen To One Of The World’s Largest Living Organisms As It Eerily Rumbles
  • First-Ever Detection Of Complex Organic Molecules In Ice Outside Of The Milky Way
  • Chinese Spacecraft Around Mars Sends Back Intriguing Gif Of Interstellar Comet 3I/ATLAS
  • Are Polar Bears Dangerous? How “Bear-Dar” Can Keep Polar Bears And People Safe (And Separate)
  • Incredible New Roman Empire Map Shows 300,000 Kilometers Of Roads, Equivalent To 7 Times Around The World
  • Watch As Two Meteors Slam Into The Moon Just A Couple Of Days Apart
  • Qubit That Lasts 3 Times As Long As The Record Is Major Step Toward Practical Quantum Computers
  • “They Give Birth Just Like Us”: New Species Of Rare Live-Bearing Toads Can Carry Over 100 Babies
  • The Place On Earth Where It Is “Impossible” To Sink, Or Why You Float More Easily In Salty Water
  • Like Catching A Super Rare Pokémon: Blonde Albino Echnida Spotted In The Wild
  • Voters Live Longer, But Does That Mean High Election Turnout Is A Tool For Public Health?
  • What Is The Longest Tunnel In The World? It Runs 137 Kilometers Under New York With Famously Tasty Water
  • The Long Quest To Find The Universe’s Original Stars Might Be Over
  • Why Doesn’t Flying Against The Earth’s Rotation Speed Up Flight Times?
  • Universe’s Expansion Might Be Slowing Down, Remarkable New Findings Suggest
  • Chinese Astronauts Just Had Humanity’s First-Ever Barbecue In Space
  • Wild One-Minute Video Clearly Demonstrates Why Mercury Is Banned On Airplanes
  • Business
  • Health
  • News
  • Science
  • Technology
  • +1 718 874 1545
  • +91 78878 22626
  • [email protected]
Office Address
Prudour Pvt. Ltd. 420 Lexington Avenue Suite 300 New York City, NY 10170.

Powered by Prudour Network

Copyrights © 2025 · Medical Market Report. All Rights Reserved.

Go to mobile version