Monday, August 18, 2025
Science
No Result
View All Result
  • Login
  • HOME
  • SCIENCE NEWS
  • CONTACT US
  • HOME
  • SCIENCE NEWS
  • CONTACT US
No Result
View All Result
Scienmag
No Result
View All Result
Home Science News Space

How did a satellite galaxy of the Milky Way come to be?

June 11, 2024
in Space
Reading Time: 3 mins read
0
65
SHARES
595
VIEWS
Share on FacebookShare on Twitter
ADVERTISEMENT
ADVERTISEMENT

RIVERSIDE, Calif. — Crater 2, located approximately 380,000 light years from Earth, is one of the largest satellite galaxies of the Milky Way. Extremely cold and with slow-moving stars, Crater 2 has low surface brightness. How this galaxy originated remains unclear.

RIVERSIDE, Calif. — Crater 2, located approximately 380,000 light years from Earth, is one of the largest satellite galaxies of the Milky Way. Extremely cold and with slow-moving stars, Crater 2 has low surface brightness. How this galaxy originated remains unclear.

“Since its discovery in 2016, there have been many attempts to reproduce Crater 2’s unusual properties, but it has proved very challenging,” said Hai-Bo Yu, a professor of physics and astronomy at the University of California, Riverside, whose team now offers an explanation for Crater 2’s origin in a paper published in The Astrophysical Journal Letters.

A satellite galaxy is a smaller galaxy that orbits a larger host galaxy. Dark matter makes up 85% of the universe’s matter, and it can form a spherical structure under the influence of gravity called a dark matter halo. Invisible, the halo permeates and surrounds a galaxy like Crater 2. The fact that Crater 2 is extremely cold indicates its halo has a low density. 

Yu explained that Crater 2 evolved in the tidal field of the Milky Way and experienced tidal interactions with the host galaxy, similar to how Earth’s oceans experience tidal forces due to the gravity of the Moon. In theory, the tidal interactions can reduce the density of the dark matter halo. 

However, the latest measurements of the orbit of Crater 2 around the Milky Way suggest the strength of the tidal interactions is too weak to lower the satellite galaxy’s dark matter density to be consistent with its measurements — if dark matter is made of cold, collisionless particles, as expected from the prevailing cold dark matter theory, or CDM.   

“Another puzzle is how Crater 2 could have a large size, as the tidal interactions would reduce the size when the satellite galaxy evolves in the tidal field of the Milky Way,” Yu said. 

Yu and his team invoke a different theory to explain Crater 2’s properties and origin. Called self-interacting dark matter, or SIDM, it can compellingly explain diverse dark matter distributions. It proposes that dark matter particles self-interact through a dark force, strongly colliding with one another close to the center of a galaxy.

“Our work shows that SIDM can explain the unusual properties of Crater 2,” Yu said. “The key mechanism is that dark matter self-interactions thermalize the halo of Crater 2 and produce a shallow density core, that is, the dark matter density is flattened at small radii. In contrast, in a CDM halo, the density would increase sharply toward the center of the galaxy.” 

According to Yu, in SIDM, a relatively small strength of tidal interactions, consistent with what can be expected from measurements of Crater 2’s orbit, is sufficient to lower Crater 2’s dark matter density, consistent with observations.

“Importantly, the galaxy size also expands in a SIDM halo, which explains Crater 2’s large size,” Yu said. “Dark matter particles are just more loosely bound in a cored SIDM halo than in a ‘cuspy’ CDM halo. Our work shows that SIDM is better than CDM at explaining how Crater 2 originated.”

Yu was joined in the study by Daneng Yang of UCR, and Xingyu Zhang and Haipeng An of Tsinghua University in China.

Yu’s research was supported by the John Templeton Foundation and the U.S. Department of Energy.

The title of the research paper is “Self-interacting dark matter interpretation of Crater II.”

The University of California, Riverside is a doctoral research university, a living laboratory for groundbreaking exploration of issues critical to Inland Southern California, the state and communities around the world. Reflecting California’s diverse culture, UCR’s enrollment is more than 26,000 students. The campus opened a medical school in 2013 and has reached the heart of the Coachella Valley by way of the UCR Palm Desert Center. The campus has an annual impact of more than $2.7 billion on the U.S. economy. To learn more, visit www.ucr.edu.



Journal

The Astrophysical Journal Letters

DOI

10.3847/2041-8213/ad50cd

Method of Research

Observational study

Subject of Research

Not applicable

Article Title

Self-interacting dark matter interpretation of Crater II.

Article Publication Date

10-Jun-2024

COI Statement

Authors have no conflict of interest.

Share26Tweet16
Previous Post

OHIO researchers explore alignment between hospitals and public health departments in addressing community health needs in paper published in “Health Affairs”

Next Post

Pilot study in JNCCN explores new approach for reducing anxiety and improving quality of life after stem cell transplantation

Related Posts

Space

Dilemma in B Decay Persists

August 16, 2025
blank
Space

Brane Tension: Neutron Stars Reveal Cosmic Secrets

August 16, 2025
blank
Space

Quantum Gravity Sees Black Hole Shadows Dance

August 15, 2025
blank
Space

Infant Mice Thrive in Microgravity: A Groundbreaking Space Research Discovery

August 15, 2025
blank
Space

Loop Quantum Gravity: Black Hole Effects Rewritten

August 15, 2025
blank
Space

Extended Enriched Gas Found in Redshift 6.7 Merger

August 15, 2025
Next Post
Dr. Amonoo

Pilot study in JNCCN explores new approach for reducing anxiety and improving quality of life after stem cell transplantation

  • Mothers who receive childcare support from maternal grandparents show more parental warmth, finds NTU Singapore study

    Mothers who receive childcare support from maternal grandparents show more parental warmth, finds NTU Singapore study

    27535 shares
    Share 11011 Tweet 6882
  • University of Seville Breaks 120-Year-Old Mystery, Revises a Key Einstein Concept

    949 shares
    Share 380 Tweet 237
  • Bee body mass, pathogens and local climate influence heat tolerance

    641 shares
    Share 256 Tweet 160
  • Researchers record first-ever images and data of a shark experiencing a boat strike

    507 shares
    Share 203 Tweet 127
  • Warm seawater speeding up melting of ‘Doomsday Glacier,’ scientists warn

    311 shares
    Share 124 Tweet 78
Science

Embark on a thrilling journey of discovery with Scienmag.com—your ultimate source for cutting-edge breakthroughs. Immerse yourself in a world where curiosity knows no limits and tomorrow’s possibilities become today’s reality!

RECENT NEWS

  • Validating AI Ethics Scale for Nursing Students
  • How Identity Shapes New Nurses’ Turnover Intentions
  • Psychological Flexibility Shapes Lasting Effects of Childhood Trauma
  • New Metabolic Inflammation Model Explains Teen Reproductive Issues

Categories

  • Agriculture
  • Anthropology
  • Archaeology
  • Athmospheric
  • Biology
  • Bussines
  • Cancer
  • Chemistry
  • Climate
  • Earth Science
  • Marine
  • Mathematics
  • Medicine
  • Pediatry
  • Policy
  • Psychology & Psychiatry
  • Science Education
  • Social Science
  • Space
  • Technology and Engineering

Subscribe to Blog via Email

Success! An email was just sent to confirm your subscription. Please find the email now and click 'Confirm Follow' to start subscribing.

Join 4,859 other subscribers

© 2025 Scienmag - Science Magazine

Welcome Back!

Login to your account below

Forgotten Password?

Retrieve your password

Please enter your username or email address to reset your password.

Log In
No Result
View All Result
  • HOME
  • SCIENCE NEWS
  • CONTACT US

© 2025 Scienmag - Science Magazine