Astronomers image for the first time a black hole expelling a powerful jet
2023-04-26
(Press-News.org)
An international team of scientists led by Dr. LU Rusen from the Shanghai Astronomical Observatory (SHAO) of the Chinese Academy of Sciences has used new millimeter-wavelength observations to produce an image that shows, for the first time, both the ring-like accretion structure around a black hole, where matter falls into the black hole, and the black hole's associated powerful relativistic jet. The source of the images was the central black hole of the prominent radio galaxy Messier 87.
The study was published in Nature on April 26.
The image underlines for the first time the connection between the accretion flow near the central supermassive black hole and the origin of the jet. The new observations were obtained with the Global Millimeter VLBI Array (GMVA), complemented by the phased Atacama Large Millimeter/submillimeter Array (ALMA) and the Greenland Telescope (GLT). The addition of these two observatories has greatly enhanced the imaging capabilities of the GMVA.
"Previously, we had seen both the black hole and the jet in separate images, but now we have taken a panoramic picture of the black hole together with its jet at a new wavelength," said Dr. LU.
The surrounding material is thought to fall into the black hole in a process known as accretion. But no one had ever imaged it directly.
According to LU, the ring that was seen before was becoming larger and thicker at the 3.5 mm observing wavelength. "This shows that the material falling into the black hole produces additional emission that is now observed in the new image. This gives us a more complete view of the physical processes acting near the black hole," said LU.
The participation of ALMA and GLT in the GMVA observations and the resulting increase in resolution and sensitivity of this intercontinental network of telescopes has made it possible to image the ring-like structure in M87 for the first time at the 3.5 mm wavelength. The diameter of the ring measured by the GMVA is 64 microarcseconds, which corresponds to the size of a small (5-inch/13-cm) selfie ring light on Earth as seen by an astronaut on the Moon. This diameter is 50 percent larger than what was seen in observations by the Event Horizon Telescope at 1.3 mm, in accordance with expectations for the emission from relativistic plasma in this region.
"With the greatly improved imaging capabilities by adding ALMA and GLT into GMVA observations, we have gained a new perspective. We do indeed see the triple-ridged jet that we knew about from earlier VLBI observations," said Thomas Krichbaum of the Max Planck Institute for Radio Astronomy (MPIfR) in Bonn. "But now we can see how the jet emerges from the emission ring around the central supermassive black hole and we can measure the ring diameter also at another (longer) wavelength."
The light from M87 is produced by the interplay between highly energetic electrons and magnetic fields, a phenomenon called synchrotron radiation. The new observations, at a wavelength of 3.5 mm, reveal more details about the location and energy of these electrons. They also tell us something about the nature of the black hole itself: It is not very hungry. It consumes matter at a low rate, converting only a small fraction of it into radiation.
According to Keiichi Asada from the Institute of Astronomy and Astrophysics of Academia Sinica, "To understand the physical origin of the bigger and thicker ring, we had to use computer simulations to test different scenarios. As a result, we concluded that the larger extent of the ring is associated with the accretion flow."
Kazuhiro Hada from the National Astronomical Observatory of Japan noted that the team also found something "surprising" in their data. "The radiation from the inner region close to the black hole is broader than we expected. This could mean that there is more than just gas falling in. There could also be a wind blowing out, causing turbulence and chaos around the black hole," said Hada.
The quest to learn more about Messier 87 is not over, as further observations and a fleet of powerful telescopes continue to unlock its secrets. "Future observations at millimeter wavelengths will study the time evolution of the M87 black hole and provide a polychromatic view of the black hole with multiple color images in radio light," said Jongho Park of the Korea Astronomy and Space Science Institute.
END
ELSE PRESS RELEASES FROM THIS DATE:
2023-04-26
Our genetic code includes over 15,000 specific sections that can be made into molecules called lincRNAs. Some of these sections can occur in coiled-up sections of our genome called TADs. LincRNAs derived from TADs appear to act as markers indicating the specific kind of tissue they are within. When something is wrong in these tissues, the markers could help with targeted medical interventions. The team that discovered this novel feature has outlined a way to apply this idea to different diseases and demonstrated it with a heart disease known as hypertrophic cardiomyopathy.
Diseases can affect very specific ...
2023-04-26
Fungal spores found in dung have revealed that large animals went extinct in two “waves” in the Colombian Andes.
Spores of coprophilous fungi pass through the guts of megafauna (animals over 45kg) as part of their life cycle, so the presence of the spores in sediment samples shows large animals lived in a certain place and time.
The study, by the University of Exeter, found that large animals became locally extinct at Pantano de Monquentiva about 23,000 years ago, and again about 11,000 years ago – with major impacts on ecosystems.
The study used ...
2023-04-26
More than 45,000 Americans died by suicide in 2020, a 30% increase over 2000, making it the 12th leading cause of death in the U.S. Studies have shown that the social and environmental factors where people live, like exposure to violence and crime, access to quality health care, food insecurity, job opportunities, and air pollution, are connected to suicide rates.
Now, a new research study from the University of Chicago provides more statistical evidence that social determinants of health are tightly linked to suicide risk. The study, published ...
2023-04-26
Contrary to popular belief, firearm deaths in the U.S. are statistically more likely in small towns, not major cities, according to new research. Across the country, gun suicides are more common than gun homicides, and gun suicides are largely responsible for an increase in gun deaths over the past few decades, the study also finds.
The analysis of two decades of U.S. mortality data was conducted by researchers at Columbia University Mailman School of Public Health, Children’s Hospital of Philadelphia, and the University of California, Davis, and appears in the journal JAMA Surgery.
“Our study has found that the divide in total intentional ...
2023-04-26
About The Study: The findings of this randomized clinical trial including 2,200 adolescents indicate that the NVX-CoV2373 (Novavax, Inc.) COVID-19 vaccine is safe, immunogenic, and efficacious in preventing COVID-19, including the predominant Delta variant, in adolescents.
Authors: German Anez, M.D., of Novavax, Inc., in Gaithersburg, Maryland, is the corresponding author.
To access the embargoed study: Visit our For The Media website at this link https://media.jamanetwork.com/
(doi:10.1001/jamanetworkopen.2023.9135)
Editor’s Note: Please see the article for additional information, including other authors, author contributions ...
2023-04-26
About The Study: This study found that living in a more economically deprived and socially marginalized area was associated with increased risk of using violence against others. The finding suggests that interventions may need to include investments in neighborhoods with the highest levels of violence to help reduce downstream transmission of violence.
Authors: Elizabeth C. Pino, Ph.D., of the Boston University School of Medicine, is the corresponding author.
To access the embargoed study: Visit our For The Media website at this link https://media.jamanetwork.com/
(doi:10.1001/jamanetworkopen.2023.8404)
Editor’s ...
2023-04-26
Note to journaliststs. There are two linked press releases below: the first describes the scientific findings. The second describes the challenges of working in the Amazon forest.
How the Amazon rainforest is likely to cope with the effect of future drought
New study identifies regions in the rainforest most at risk from drier conditions
Drought will reduce the rainforest’s ability to remove carbon from the environment
A major collaboration involving 80 scientists from Europe and South America has identified the regions of the Amazon rainforest where trees are most likely to face the greatest risk from drier ...
2023-04-26
Researchers at Baylor College of Medicine have unraveled the processes that give astrocytes, the most abundant glial cell in the brain, their special bushy shape, which is fundamental for brain function. They report in the journal Nature that neuronal activity is necessary and sufficient for astrocytes to develop their complex shape, and interrupting this developmental process results in disrupted brain function.
“Astrocytes play diverse roles that are vital for proper brain function,” said first author Yi-Ting Cheng, a graduate student in Dr. Benjamin Deneen’s lab at Baylor. “For instance, they support the activity of other essential brain cells, ...
2023-04-26
The new chemical process is not limited to wind turbine blades but works on many different so-called fibre-reinforced epoxy composites, including some materials that are reinforced with especially costly carbon fibres.
Thus, the process can contribute to establishing a potential circular economy in the wind turbine, aerospace, automotive and space industries, where these reinforced composites, due to their light weight and long durability, are used for load-bearing structures.
Being designed to last, the durability of the blades poses an ...
2023-04-26
"Previously we had seen both the black hole and the jet in separate images, but now we have taken a panoramic picture of the black hole together with its jet at a new wavelength”, says Ru-Sen Lu, from the Shanghai Astronomical Observatory and leader of a Max Planck Research Group at the Chinese Academy of Sciences. The surrounding material is thought to fall into the black hole in a process known as accretion. But no one has ever imaged it directly. "The ring that we have seen before is becoming larger and thicker at 3.5 mm observing wavelength. This shows that the material falling into the black hole produces additional emission that is now observed in the new ...
LAST 30 PRESS RELEASES:
[Press-News.org] Astronomers image for the first time a black hole expelling a powerful jet