Technology NewsTechnology NewsTechnology News
  • Computing
  • AI
  • Robotics
  • Cybersecurity
  • Electric Vehicle
  • Wearables
  • Gaming
  • Space
Reading: Black Holes Inherit Magnetic Fields from Parent Stars
Share
Font ResizerAa
Technology NewsTechnology News
Font ResizerAa
Search
  • Computing
  • AI
  • Robotics
  • Cybersecurity
  • Electric Vehicle
  • Wearables
  • Gaming
  • Space
Follow US
  • Cookie Policy (EU)
  • Contact
  • About
© 2025 NEWSLINKER - Powered by LK SOFTWARE
Space

Black Holes Inherit Magnetic Fields from Parent Stars

Highlights

  • Black holes inherit magnetic fields from their progenitor neutron stars.

  • Accretion disks play a key role in preserving these magnetic fields.

  • This discovery enhances understanding of gamma-ray bursts and black hole jets.

Ethan Moreno
Last updated: 21 November, 2024 - 11:28 pm 11:28 pm
Ethan Moreno 6 months ago
Share
SHARE

Recent research has shed light on the enigmatic magnetic properties of black holes, suggesting they derive these fields from their progenitor stars. Utilizing advanced simulations, scientists have been able to model the lifecycle of stars from their birth to their eventual collapse into black holes. This breakthrough offers a clearer picture of how some of the universe’s most powerful phenomena, such as gamma-ray bursts, originate.

Contents
How Do Black Holes Acquire Magnetic Fields?What Role Do Accretion Disks Play?How Does This Impact Our Understanding of Gamma-Ray Bursts?

Previous studies speculated on various sources for black hole magnetism, but none provided a comprehensive explanation that accounted for the observed strength of relativistic jets and gamma-ray bursts. The new findings build upon earlier theories, offering a more detailed mechanism by which magnetic fields are preserved during the collapse process. This continuity aligns with observed astronomical events more closely than prior models.

How Do Black Holes Acquire Magnetic Fields?

Black holes obtain their magnetic fields from the stars that collapse to form them. According to Ore Gottlieb, a Research Fellow at the Flatiron Institute, the magnetic lines of the parent neutron star become anchored in the surrounding accretion disk during the collapse, preserving the magnetic field as the black hole forms.

What Role Do Accretion Disks Play?

Accretion disks are crucial in maintaining the magnetic fields of newly formed black holes. The simulations conducted by the research team demonstrated that these disks form rapidly enough to retain the magnetic lines from the collapsing neutron star, enabling the black hole to sustain strong magnetic fields necessary for jet formation.

How Does This Impact Our Understanding of Gamma-Ray Bursts?

This discovery links the magnetic fields of black holes directly to the mechanisms behind gamma-ray bursts. With a sustained magnetic field inherited from the parent star, black holes can generate the powerful relativistic jets observed in gamma-ray bursts, providing a clearer explanation for these intense cosmic events.

The study led by Ore Gottlieb and his team from the Flatiron Institute, Columbia University, and other institutions introduces a pivotal understanding of black hole magnetism. By confirming that accretion disks preserve magnetic fields during collapse, researchers can better predict and analyze the behavior of relativistic jets and gamma-ray bursts. This insight not only resolves a longstanding mystery but also opens new avenues for observing and studying the dynamics of black holes in the universe.

You can follow us on Youtube, Telegram, Facebook, Linkedin, Twitter ( X ), Mastodon and Bluesky

You Might Also Like

Subaru Telescope Confirms 2024 YR4 Won’t Impact Earth

NASA Records Asteroid Sample Capsule’s Reentry Using Fiber Optic Sensors

Hubble Uncovers Distinct Star Formation in Andromeda’s Dwarf Galaxies

Brine Shrimps Thrive in Simulated Martian Pressures: New Study

New Pulsar Technique Maps Dark Matter Distribution in Milky Way

Share This Article
Facebook Twitter Copy Link Print
Ethan Moreno
By Ethan Moreno
Ethan Moreno, a 35-year-old California resident, is a media graduate. Recognized for his extensive media knowledge and sharp editing skills, Ethan is a passionate professional dedicated to improving the accuracy and quality of news. Specializing in digital media, Moreno keeps abreast of technology, science and new media trends to shape content strategies.
Previous Article OpenAI CEO Sam Altman Receives Modest Salary, Holds Billion-Dollar Investments
Next Article Asteroid 2024 PT5 Orbits Earth as Temporary Mini-Moon

Stay Connected

6.2kLike
8kFollow
2.3kSubscribe
1.7kFollow

Latest News

Trump Alters AI Chip Export Strategy, Reversing Biden Controls
AI
Solve Wordle’s Daily Puzzle with These Expert Tips
Gaming
US Automakers Boost Robot Deployment in 2024
Robotics
Uber Expands Autonomy Partnership with $100 Million Investment in WeRide
Robotics
EB Games Returns to Canada and Recaptures Nostalgia
Gaming
NEWSLINKER – your premier source for the latest updates in ai, robotics, electric vehicle, gaming, and technology. We are dedicated to bringing you the most accurate, timely, and engaging content from across these dynamic industries. Join us on our journey of discovery and stay informed in this ever-evolving digital age.

ARTIFICAL INTELLIGENCE

  • Can Artificial Intelligence Achieve Consciousness?
  • What is Artificial Intelligence (AI)?
  • How does Artificial Intelligence Work?
  • Will AI Take Over the World?
  • What Is OpenAI?
  • What is Artifical General Intelligence?

ELECTRIC VEHICLE

  • What is Electric Vehicle in Simple Words?
  • How do Electric Cars Work?
  • What is the Advantage and Disadvantage of Electric Cars?
  • Is Electric Car the Future?

RESEARCH

  • Robotics Market Research & Report
  • Everything you need to know about IoT
  • What Is Wearable Technology?
  • What is FANUC Robotics?
  • What is Anthropic AI?
Technology NewsTechnology News
Follow US
About Us   -  Cookie Policy   -   Contact

© 2025 NEWSLINKER. Powered by LK SOFTWARE
Welcome Back!

Sign in to your account

Register Lost your password?