Will portraying black holes as holograms lead to new insights or comprehension?

#1
C C Offline
https://www.eurekalert.org/pub_releases/...060320.php

RELEASE: We can all picture that incredible image of a black hole that travelled around the world about a year ago. Yet, according to new research by SISSA, ICTP and INFN, black holes could be like a hologram, where all the information is amassed in a two-dimensional surface able to reproduce a three-dimensional image. In this way, these cosmic bodies, as affirmed by quantum theories, could be incredibly complex and concentrate an enormous amount of information inside themselves, as the largest hard disk that exists in nature, in two dimensions. This idea aligns with Einstein's theory of relativity, which describes black holes as three dimensional, simple, spherical, and smooth, as they appear in that famous image. In short, black holes "appear" as three dimensional, just like holograms. The study which demonstrates it, and which unites two discordant theories, has recently been published in Physical Review X.

For scientists, black holes are a big question mark for many reasons. They are, for example, excellent representatives of the great difficulties of theoretical physics in putting together the principles of Einstein's general theory of relativity with those of quantum physics when it comes to gravity. According to the first theory, they would be simple bodies without information. According to the other, as claimed by Jacob Bekenstein and Stephen Hawking, they would be "the most complex existing systems" because they would be characterised by an enormous "entropy", which measures the complexity of a system, and consequently would have a lot of information inside them.

To study black holes, the two authors of the research, Francesco Benini (SISSA Professor, ICTP scientific consultant and INFN researcher) and Paolo Milan (SISSA and INFN researcher), used an idea almost 30 years old, but still surprising, called the "holographic principle". The researchers say: "This revolutionary and somewhat counterintuitive principle proposes that the behavior of gravity in a given region of space can alternatively be described in terms of a different system, which lives only along the edge of that region and therefore in a one less dimension. And, more importantly, in this alternative description (called holographic) gravity does not appear explicitly. In other words, the holographic principle allows us to describe gravity using a language that does not contain gravity, thus avoiding friction with quantum mechanics".

What Benini and Milan have done "is apply the theory of the holographic principle to black holes. In this way, their mysterious thermodynamic properties have become more understandable: focusing on predicting that these bodies have a great entropy and observing them in terms of quantum mechanics, you can describe them just like a hologram: they have two dimensions, in which gravity disappears, but they reproduce an object in three dimensions".

"This study," explain the two scientists, "is only the first step towards a deeper understanding of these cosmic bodies and of the properties that characterise them when quantum mechanics crosses with general relativity. Everything is more important now at a time when observations in astrophysics are experiencing an incredible development. Just think of the observation of gravitational waves from the fusion of black holes result of the collaboration between LIGO and Virgo or, indeed, that of the black hole made by the Event Horizon Telescope that produced this extraordinary image. In the near future, we may be able to test our theoretical predictions regarding quantum gravity, such as those made in this study, by observation. And this, from a scientific point of view, would be something absolutely exceptional".
Reply


Possibly Related Threads…
Thread Author Replies Views Last Post
  Article Misconception: The real reason we can't travel FTL + Einstein against black holes C C 3 713 Sep 1, 2025 07:29 AM
Last Post: Syne
  Article Planck scale not a limit? + Secrets of time? + Failure to eliminate black holes? C C 0 494 Jun 12, 2025 06:11 PM
Last Post: C C
  Research Black holes: not endings, but beginnings? New research could revolutionize our un... C C 0 511 Mar 12, 2025 09:10 PM
Last Post: C C
  Research Primordial black holes hiding in planets, even everyday objects on Earth C C 0 494 Dec 2, 2024 06:12 PM
Last Post: C C
  Article Swirling forces, crushing pressures measured in the proton + Do black holes explode? C C 0 503 Mar 15, 2024 06:25 PM
Last Post: C C
  Article How black holes consume entropy + Is anything absolute with relativity? C C 0 424 Nov 16, 2023 04:36 PM
Last Post: C C
  Article Black holes might be defects in spacetime C C 1 537 May 17, 2023 06:45 PM
Last Post: C C
  Black holes will eventually destroy all quantum states, researchers argue C C 2 628 Mar 27, 2023 07:18 PM
Last Post: C C
  Black holes could reveal their quantum-superposition states, new calculations reveal C C 0 600 Nov 20, 2022 06:12 PM
Last Post: C C
  Zero-index metamaterials offers new insights into foundations of quantum mechanics C C 0 377 Apr 28, 2022 05:32 PM
Last Post: C C



Users browsing this thread: 1 Guest(s)