24/7 Space News
TIME AND SPACE
New NASA Black Hole Visualization Takes Viewers Beyond the Brink
illustration only
New NASA Black Hole Visualization Takes Viewers Beyond the Brink
by Francis Reddy for GSFC News
Greenbelt MD (SPX) May 07, 2024

Ever wonder what happens when you fall into a black hole? Now, thanks to a new, immersive visualization produced on a NASA supercomputer, viewers can plunge into the event horizon, a black hole's point of no return. "People often ask about this, and simulating these difficult-to-imagine processes helps me connect the mathematics of relativity to actual consequences in the real universe," said Jeremy Schnittman, an astrophysicist at NASA's Goddard Space Flight Center in Greenbelt, Maryland, who created the visualizations. "So I simulated two different scenarios, one where a camera - a stand-in for a daring astronaut - just misses the event horizon and slingshots back out, and one where it crosses the boundary, sealing its fate."

The visualizations are available in multiple forms. Explainer videos act as sightseeing guides, illuminating the bizarre effects of Einstein's general theory of relativity. Versions rendered as 360-degree videos let viewers look all around during the trip, while others play as flat all-sky maps.

To create the visualizations, Schnittman teamed up with fellow Goddard scientist Brian Powell and used the Discover supercomputer at the NASA Center for Climate Simulation. The project generated about 10 terabytes of data - equivalent to roughly half of the estimated text content in the Library of Congress - and took about 5 days running on just 0.3% of Discover's 129,000 processors. The same feat would take more than a decade on a typical laptop.

The destination is a supermassive black hole with 4.3 million times the mass of our Sun, equivalent to the monster located at the center of our Milky Way galaxy.

"If you have the choice, you want to fall into a supermassive black hole," Schnittman explained. "Stellar-mass black holes, which contain up to about 30 solar masses, possess much smaller event horizons and stronger tidal forces, which can rip apart approaching objects before they get to the horizon."

This occurs because the gravitational pull on the end of an object nearer the black hole is much stronger than that on the other end. Infalling objects stretch out like noodles, a process astrophysicists call spaghettification.

The simulated black hole's event horizon spans about 16 million miles (25 million kilometers), or about 17% of the distance from Earth to the Sun. A flat, swirling cloud of hot, glowing gas called an accretion disk surrounds it and serves as a visual reference during the fall. So do glowing structures called photon rings, which form closer to the black hole from light that has orbited it one or more times. A backdrop of the starry sky as seen from Earth completes the scene.

As the camera approaches the black hole, reaching speeds ever closer to that of light itself, the glow from the accretion disk and background stars becomes amplified in much the same way as the sound of an oncoming racecar rises in pitch. Their light appears brighter and whiter when looking into the direction of travel.

The movies begin with the camera located nearly 400 million miles (640 million kilometers) away, with the black hole quickly filling the view. Along the way, the black hole's disk, photon rings, and the night sky become increasingly distorted - and even form multiple images as their light traverses the increasingly warped space-time.

In real time, the camera takes about 3 hours to fall to the event horizon, executing almost two complete 30-minute orbits along the way. But to anyone observing from afar, it would never quite get there. As space-time becomes ever more distorted closer to the horizon, the image of the camera would slow and then seem to freeze just shy of it. This is why astronomers originally referred to black holes as "frozen stars."

At the event horizon, even space-time itself flows inward at the speed of light, the cosmic speed limit. Once inside it, both the camera and the space-time in which it's moving rush toward the black hole's center - a one-dimensional point called a singularity, where the laws of physics as we know them cease to operate.

"Once the camera crosses the horizon, its destruction by spaghettification is just 12.8 seconds away," Schnittman said. From there, it's only 79,500 miles (128,000 kilometers) to the singularity. This final leg of the voyage is over in the blink of an eye.

In the alternative scenario, the camera orbits close to the event horizon but it never crosses over and escapes to safety. If an astronaut flew a spacecraft on this 6-hour round trip while her colleagues on a mothership remained far from the black hole, she'd return 36 minutes younger than her colleagues. That's because time passes more slowly near a strong gravitational source and when moving near the speed of light.

"This situation can be even more extreme," Schnittman noted. "If the black hole were rapidly rotating, like the one shown in the 2014 movie 'Interstellar,' she would return many years younger than her shipmates."

Related Links
360 Video: NASA Simulation Shows a Flight Around a Black Hole
Understanding Time and Space

Subscribe Free To Our Daily Newsletters
Tweet

RELATED CONTENT
The following news reports may link to other Space Media Network websites.
TIME AND SPACE
Astronomers discover largest black hole in Milky Way: study
Paris (AFP) April 16, 2024
Astronomers identified the largest stellar black hole yet discovered in the Milky Way, with a mass 33 times that of the Sun, according to a study published on Tuesday. The black hole, named Gaia BH3, was discovered "by chance" from data collected by the European Space Agency's Gaia mission, an astronomer from the National Centre for Scientific Research (CNRS) at the Observatoire de Paris, Pasquale Panuzzo, told AFP. Gaia, which is dedicated to mapping the Milky Way galaxy, located BH3 2,000 ligh ... read more

TIME AND SPACE
NASA names David Salvagnini as chief artificial intelligence officer

Boeing Starliner crewed mission postponed to May 17

Boeing's Starliner set for first crewed mission to ISS

Boeing's Starliner joins select club of crewed US spaceships

TIME AND SPACE
SpaceX Starlink flight lifts off in Florida; 2nd launch of day planned for California later

Long March 6C rocket joins fleet with successful inaugural launch

SpaceX launches 23 Starlink satellites from Florida

Maritime Launch Secures Conditional $12.9M Term Sheet from Canadian Government

TIME AND SPACE
Tracing organic matter origins in Martian sediments

Mars agriculture simulations show promise and challenges

Manganese discovery on Mars suggests ancient Earth-like conditions

NASA launches commercial studies to facilitate Mars robotic science

TIME AND SPACE
China sends experimental satellite into orbit with Long March 4C rocket

International Support for China's Chang'e-6 Lunar Mission

Shenzhou XVII astronauts safely back from Tiangong space station

Shenzhou XVIII crew takes command at Tiangong space station

TIME AND SPACE
South Australian space companies embark on growth mission with new UniSA program

Ovzon introduces two new satellite communication services based on Ovzon 3 technology

Rocket Lab Posts Strong First Quarter with Significant Revenue and Growth Projections

Inred and SES expand satellite internet coverage in Colombia's Amazonas

TIME AND SPACE
SwRI investigates boiling processes in partial gravity

Starfish Space and D-Orbit successfully conduct satellite rendezvous

SWISSto12 provides RF products to Northrop Grumman for GEOStar-3 satellite program

Mu Space Secures Key Thai Government Approvals to Enhance Space Tech and Smart Electronics

TIME AND SPACE
A perfect tidal storm: HD 104067 planetary architecture creating an incandescent world

Evidence of atmosphere discovered on rocky exoplanet 55 Cancri e

Ozone's influence on exoplanetary climate dynamics highlighted in new research

Genomes of multicellular algal relatives reveal evolutionary clues to plant origins

TIME AND SPACE
UAF scientist clarifies Jupiter's magnetospheric dynamics with new data

Webb telescope details weather patterns on distant exoplanet

Juno mission reveals volcanic landscapes on Io

Probing liquid water beyond Earth with advanced radar technology

Subscribe Free To Our Daily Newsletters




The content herein, unless otherwise known to be public domain, are Copyright 1995-2024 - Space Media Network. All websites are published in Australia and are solely subject to Australian law and governed by Fair Use principals for news reporting and research purposes. AFP, UPI and IANS news wire stories are copyright Agence France-Presse, United Press International and Indo-Asia News Service. ESA news reports are copyright European Space Agency. All NASA sourced material is public domain. Additional copyrights may apply in whole or part to other bona fide parties. All articles labeled "by Staff Writers" include reports supplied to Space Media Network by industry news wires, PR agencies, corporate press officers and the like. Such articles are individually curated and edited by Space Media Network staff on the basis of the report's information value to our industry and professional readership. Advertising does not imply endorsement, agreement or approval of any opinions, statements or information provided by Space Media Network on any Web page published or hosted by Space Media Network. General Data Protection Regulation (GDPR) Statement Our advertisers use various cookies and the like to deliver the best ad banner available at one time. All network advertising suppliers have GDPR policies (Legitimate Interest) that conform with EU regulations for data collection. By using our websites you consent to cookie based advertising. If you do not agree with this then you must stop using the websites from May 25, 2018. Privacy Statement. Additional information can be found here at About Us.