PRESS-NEWS.org - Press Release Distribution
PRESS RELEASES DISTRIBUTION

Universe's early galaxies grew massive through collisions

2014-01-29
(Press-News.org) Contact information: Gertie Skaarup
skaarup@nbi.dk
45-28-75-06-20
University of Copenhagen - Niels Bohr Institute
Universe's early galaxies grew massive through collisions

It has long puzzled scientists that there were enormously massive galaxies that were already old and no longer forming new stars in the very early universe, approx. 3 billion years after the Big Bang. Now new research from the Niels Bohr Institute, among others, shows that these massive galaxies were formed by explosive star formation that was set in motion by the collision of galaxies a few billion years after the Big Bang. The results are published in the scientific journal, Astrophysical Journal.

Galaxies are giant collections of stars, gas and dark matter. The smallest galaxies contain a few million stars, while the largest can contain several hundred billion stars. The first stars already emerged in the very early universe approx. 200 million years after the Big Bang from the gases hydrogen and helium. Gas is the raw material used to form stars. These giant clouds of gas and dust contract and eventually the gas is so compact that the pressure heats the matter so that glowing gas balls are formed, new stars are born. The stars are collected in galaxies, the first of which are a kind of baby galaxies. As long as there is gas in the galaxy, new stars are being formed.

Mysteries in the childhood of the universe

The astronomers' theory is therefore that the structure of the universe was built by baby galaxies gradually growing larger and more massive by constantly forming new stars and by colliding with neighbouring galaxies to form new, larger galaxies. The largest galaxies in today's universe were therefore believed to have been under construction throughout the history of the universe.

"That is why it surprised us that we already when the universe was only 3 billion years old, found galaxies that were just as massive as today's large spiral galaxies and the largest elliptical galaxies, which are the giants in the local universe. Even more surprisingly, the stars in these early galaxies were squeezed into a very small area, so the size of the galaxies were three times smaller than similar mass galaxies today. This means that the density of stars was 10 times greater. Furthermore, the galaxies were already dead, so they were no longer forming new stars. It was a great mystery," explains Sune Toft, Dark Cosmology Centre at the Niels Bohr Institute at the University of Copenhagen.

The extremely massive and compact galaxies were not flattened spiral galaxies where stars and gas rotate around the centre. Rather, they resembled elliptical galaxies where stars move more hither and thither and where the gas for new star formation has been used up. But how could the galaxies become so massive and so burnt out so early? How were they formed?

Solving the mystery

To find out what happened, Sune Toft had to look even further back in time. Based on the ages of the galaxies, he knew that they had to have formed very early in the history of the universe, but at that point there was simply not enough time for the galaxies to have grown so massive through normal star formation. He had a theory that the massive galaxies were formed by the fusion of smaller galaxies, but that alone could not explain how they had become so massive so quickly and were already dead. The theory was therefore, that there must have been some especially extreme galaxies in the formation process.

"We studied the galaxies that existed when the universe was between 1 and 2 billion years old. My theory that it must have been some galaxies with very specific properties that were part of the formation process made me focus on the special SMG galaxies, which are dominated by intense stare formation hidden under a thick blanket of dust," explains Sune Toft.

He explains that when such gas-rich galaxies merge, all of the gas is driven into the centre of the system where it ignites an explosion of new star formation. A lot of stars are formed in the centre and the galaxy quickly becomes very compact. But with the explosive star formation, the gas to form new stars is also used up extremely quickly and then you get a dead galaxy.

"I discovered that there was a direct evolutionary link between two of the most extreme galaxy types we have in the universe – the most distant and most intense star forming galaxies which are formed shortly after the Big Bang – and the extremely compact dead galaxies we see 1-2 billion years later," says Sune Toft.

The new research is a breakthrough in discovering the formation process of the enormously massive and dead galaxies in the early universe.

INFORMATION:

For more information contact:

Sune Toft, Astrophysicist
Dark Cosmology Centre, Niels Bohr Institute
University of Copenhagen
+45 3532-5908
mob: +45 6168-0930
sune@dark-cosmology.dk



ELSE PRESS RELEASES FROM THIS DATE:

New theory may lead to more efficient solar cells

2014-01-29
HOUSTON, Jan. 29, 2014 – A new theoretical model developed by professors at the University of Houston (UH) and Université de Montréal may hold ...

Designer proteins provide new information about the body's signal processes

2014-01-29
Proteins play a fundamental role in almost all biological processes. They consist of chains constructed of up to 20 different amino acids, and their composition, ...

Myriad's Prolaris significantly modifies treatment decisions for prostate cancer patients

2014-01-29
SALT LAKE CITY, Utah, Jan. 29, 2014 – Myriad Genetics, Inc. (NASDAQ: MYGN) today announced results from ...

Lighting up in uniform

2014-01-29
Is it possible to predict which soldier will start smoking and which one will maybe quit? Yes, says Christopher B. Harte of the Veterans Affairs Boston Healthcare System ...

A sensor detects salt on the road to avoid excess

2014-01-29
It is common to spread salt on roads to prevent ice and the hazards it can entail for traffic. This preventive treatment is based on weather forecasts, but does not take into account that the road can already have enough salt, ...

Poor breakfast in youth linked to metabolic syndrome in adulthood

2014-01-29
It is often said that breakfast is important for our health and a study conducted by Umeå University, published in Public Health Nutrition supports this claim. The study revealed that adolescents who ...

VIB scientists find new strategy to combat bacterial infections

2014-01-29
Increasing numbers of bacteria are developing antibiotic resistance. This forms a significant challenge in the battle against bacterial infections. Alvin Lo and Han Remaut ...

Study: Neuroscientists use lightwaves to improve brain tumor surgery

2014-01-29
DETROIT – First-of-its-kind research by the Innovation Institute at Henry Ford Hospital shows promise for developing a method of clearly identifying cancerous tissue during surgery on one ...

UM researchers find existence of large, deep magma chamber below Kilauea volcano

2014-01-29
MIAMI – A new study led by scientists at the University ...

Rewards facilitate human cooperation under natural selection

2014-01-29
Evolution of cooperation – or how to suppress free riders University of Vienna has an admirable tradition of investigating conditions promoting the evolution of cooperation. For last decades, ...

LAST 30 PRESS RELEASES:

Father’s mental health can impact children for years

Scientists can tell healthy and cancerous cells apart by how they move

Male athletes need higher BMI to define overweight or obesity

How thoughts influence what the eyes see

Unlocking the genetic basis of adaptive evolution: study reveals complex chromosomal rearrangements in a stick insect

Research Spotlight: Using artificial intelligence to reveal the neural dynamics of human conversation

Could opioid laws help curb domestic violence? New USF research says yes

NPS Applied Math Professor Wei Kang named 2025 SIAM Fellow

Scientists identify agent of transformation in protein blobs that morph from liquid to solid

Throwing a ‘spanner in the works’ of our cells’ machinery could help fight cancer, fatty liver disease… and hair loss

Research identifies key enzyme target to fight deadly brain cancers

New study unveils volcanic history and clues to ancient life on Mars

Monell Center study identifies GLP-1 therapies as a possible treatment for rare genetic disorder Bardet-Biedl syndrome

Scientists probe the mystery of Titan’s missing deltas

Q&A: What makes an ‘accidental dictator’ in the workplace?

Lehigh University water scientist Arup K. SenGupta honored with ASCE Freese Award and Lecture

Study highlights gaps in firearm suicide prevention among women

People with medical debt five times more likely to not receive mental health care treatment

Hydronidone for the treatment of liver fibrosis associated with chronic hepatitis B

Rise in claim denial rates for cancer-related advanced genetic testing

Legalizing youth-friendly cannabis edibles and extracts and adolescent cannabis use

Medical debt and forgone mental health care due to cost among adults

Colder temperatures increase gastroenteritis risk in Rohingya refugee camps

Acyclovir-induced nephrotoxicity: Protective potential of N-acetylcysteine

Inhibition of cyclooxygenase-2 upregulates the nuclear factor erythroid 2-related factor 2 signaling pathway to mitigate hepatocyte ferroptosis in chronic liver injury

AERA announces winners of the 2025 Palmer O. Johnson Memorial Award

Mapping minds: The neural fingerprint of team flow dynamics

Patients support AI as radiologist backup in screening mammography

AACR: MD Anderson’s John Weinstein elected Fellow of the AACR Academy

Existing drug has potential for immune paralysis

[Press-News.org] Universe's early galaxies grew massive through collisions