Solar Energy News
STELLAR CHEMISTRY
Webb reveals never-before-seen details in Cassiopeia A
Cassiopeia A (Cas A) is a supernova remnant located about 11,000 light-years from Earth in the constellation Cassiopeia. It spans approximately 10 light-years. This new image uses data from Webb's Mid-Infrared Instrument (MIRI) to reveal Cas A in a new light.
Webb reveals never-before-seen details in Cassiopeia A
by Staff Writers
Baltimore MD (SPX) Apr 07, 2023

The explosion of a star is a dramatic event, but the remains that the star leaves behind can be even more dramatic. A new mid-infrared image from NASA's James Webb Space Telescope provides one stunning example. It shows the supernova remnant Cassiopeia A (Cas A), created by a stellar explosion 340 years ago from Earth's perspective. The image displays vivid colors and intricate structures begging to be examined more closely. Cas A is the youngest known remnant from an exploding, massive star in our galaxy, offering astronomers an opportunity to perform stellar forensics to understand the star's death.

The explosion of a star is a dramatic event, but the remains the star leaves behind can be even more dramatic. A new mid-infrared image from NASA's James Webb Space Telescope provides one stunning example. It shows the supernova remnant Cassiopeia A (Cas A), created by a stellar explosion 340 years ago from Earth's perspective. Cas A is the youngest known remnant from an exploding, massive star in our galaxy, which makes it a unique opportunity to learn more about how such supernovae occur.

"Cas A represents our best opportunity to look at the debris field of an exploded star and run a kind of stellar autopsy to understand what type of star was there beforehand and how that star exploded," said Danny Milisavljevic of Purdue University in West Lafayette, Indiana, principal investigator of the Webb program that captured these observations.

"Compared to previous infrared images, we see incredible detail that we haven't been able to access before," added Tea Temim of Princeton University in Princeton, New Jersey, a co-investigator on the program.

Cassiopeia A is a prototypical supernova remnant that has been widely studied by a number of ground-based and space-based observatories, including NASA's Chandra X-ray Observatory. The multi-wavelength observations can be combined to provide scientists with a more comprehensive understanding of the remnant.

Dissecting the Image
The striking colors of the new Cas A image, in which infrared light is translated into visible-light wavelengths, hold a wealth of scientific information the team is just beginning to tease out. On the bubble's exterior, particularly at the top and left, lie curtains of material appearing orange and red due to emission from warm dust. This marks where ejected material from the exploded star is ramming into surrounding circumstellar gas and dust.

Interior to this outer shell lie mottled filaments of bright pink studded with clumps and knots. This represents material from the star itself, which is shining due to a mix of various heavy elements, such as oxygen, argon, and neon, as well as dust emission.

"We're still trying to disentangle all these sources of emission," said Ilse De Looze of Ghent University in Belgium, another co-investigator on the program.

The stellar material can also be seen as fainter wisps near the cavity's interior.

Perhaps most prominently, a loop represented in green extends across the right side of the central cavity. "We've nicknamed it the Green Monster in honor of Fenway Park in Boston. If you look closely, you'll notice that it's pockmarked with what look like mini-bubbles," said Milisavljevic. "The shape and complexity are unexpected and challenging to understand."

Origins of Cosmic Dust - and Us
Among the science questions that Cas A may help answer is: Where does cosmic dust come from? Observations have found that even very young galaxies in the early universe are suffused with massive quantities of dust. It's difficult to explain the origins of this dust without invoking supernovae, which spew large quantities of heavy elements (the building blocks of dust) across space.

However, existing observations of supernovae have been unable to conclusively explain the amount of dust we see in those early galaxies. By studying Cas A with Webb, astronomers hope to gain a better understanding of its dust content, which can help inform our understanding of where the building blocks of planets and ourselves are created.

"In Cas A, we can spatially resolve regions that have different gas compositions and look at what types of dust were formed in those regions," explained Temim.

Supernovae like the one that formed Cas A are crucial for life as we know it. They spread elements like the calcium we find in our bones and the iron in our blood across interstellar space, seeding new generations of stars and planets.

"By understanding the process of exploding stars, we're reading our own origin story," said Milisavljevic. "I'm going to spend the rest of my career trying to understand what's in this data set."

The Cas A remnant spans about 10 light-years and is located 11,000 light-years away in the constellation Cassiopeia.

Full Caption
Cassiopeia A (Cas A) is a supernova remnant located about 11,000 light-years from Earth in the constellation Cassiopeia. It spans approximately 10 light-years. This new image uses data from Webb's Mid-Infrared Instrument (MIRI) to reveal Cas A in a new light.

On the remnant's exterior, particularly at the top and left, lie curtains of material appearing orange and red due to emission from warm dust. This marks where ejected material from the exploded star is ramming into surrounding circumstellar material.

Interior to this outer shell lie mottled filaments of bright pink studded with clumps and knots. This represents material from the star itself, and likely shines due to a mix of various heavy elements and dust emission. The stellar material can also be seen as fainter wisps near the cavity's interior.

A loop represented in green extends across the right side of the central cavity. Its shape and complexity are unexpected and challenging for scientists to understand.

This image combines various filters with the color red assigned to 25.5 microns (F2550W), orange-red to 21 microns (F2100W), orange to 18 microns (F1800W), yellow to 12.8 microns (F1280W), green to 11.3 microns (F1130W), cyan to 10 microns (F1000W), light blue to 7.7 microns (F770W), and blue to 5.6 microns (F560W). The data comes from general observer program 1947.

MIRI was contributed by NASA and ESA, with the instrument designed and built by a consortium of nationally funded European Institutes (the MIRI European Consortium) and NASA's Jet Propulsion Laboratory, in partnership with the University of Arizona.

Zoom in and explore the amazing detail captured by Webb.

Related Links
Webb Telescope
Stellar Chemistry, The Universe And All Within It

Subscribe Free To Our Daily Newsletters
Tweet

RELATED CONTENT
The following news reports may link to other Space Media Network websites.
STELLAR CHEMISTRY
Scientists observe flattest explosion ever seen in space
Sheffield UK (SPX) Mar 31, 2023
An explosion the size of our solar system has baffled scientists, as part of its shape - similar to that of an extremely flat disc - challenges everything we know about explosions in space. The explosion observed was a bright Fast Blue Optical Transient (FBOT) - an extremely rare class of explosion which is much less common than other explosions, such as supernovas. The first bright FBOT was discovered in 2018 and given the nickname "the cow". Explosions of stars in the universe are almost a ... read more

STELLAR CHEMISTRY
Dutch refinery to feed airlines' thirst for clean fuel

Low concentration CO2 can be reused as plastic precursor using artificial photosynthesis

Queensland biofuel refinery to turn agricultural by-products into sustainable aviation fuel

Turning vegetable oil industry waste into power

STELLAR CHEMISTRY
RACER's off-road autonomous vehicles teams navigate third test

US weighs rules for ChatGPT-like AI

China to require 'security assessment' for new AI products

Improving how robots communicate with people

STELLAR CHEMISTRY
Wind farms drive away certain seabirds: study

Wind project near S.African elephant park riles activists

UK offshore staff 'want public ownership of energy firms'

Machine learning could help kites and gliders to harvest wind energy

STELLAR CHEMISTRY
Biden admin unveils tough emissions rules to speed electric auto shift

Japan, land of the hybrid car, takes slowly to EVs

Walmart to add EV chargers to thousands of US stores

Annual net profit of Chinese EV giant BYD up 446%

STELLAR CHEMISTRY
Fish-inspired, self-charging electric battery may help power space applications

Tesla to build battery plant in Shanghai: state media

New 'smart layer' could enhance durability and efficiency of solid-state batteries

Underground water could be the solution to green heating and cooling

STELLAR CHEMISTRY
Germany ends nuclear era as last reactors power down

How to decommission a nuclear power plant

Ukraine plant 'living on borrowed time': UN nuclear chief

Hungary says pushing ahead with Russia-backed nuclear plant expansion

STELLAR CHEMISTRY
Cities will need more resilient electricity networks to cope with extreme weather

Sun, wind power make record 12% of world electricity: survey

Fossil fuel pledges divide G7 in 'critical decade' for climate

Only 5% of top UK firms have 'credible' net zero plans: study

STELLAR CHEMISTRY
California's beetle-killed, carbon-storing pine forests may not come back

Despite Lula's promises, deforestation still rampant in Brazil

Bold talk, slow walk as Brazil's Lula sets out to save Amazon

Why are forests turning brown in summer

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.