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Neutron Star emissions found by James Webb Telescope

Neutron Star emissions found by James Webb Telescope

FromJames Webb Space Telescope


Neutron Star emissions found by James Webb Telescope

FromJames Webb Space Telescope

ratings:
Length:
7 minutes
Released:
Feb 28, 2024
Format:
Podcast episode

Description

NASA’s James Webb Space Telescope has found the best evidence yet for emission from a neutron star at the site of a recently observed supernova. The supernova, known as SN 1987A, was a core-collapse supernova, meaning the compacted remains at its core formed either a neutron star or a black hole. Evidence for such a compact object has long been sought, and while indirect evidence for the presence of a neutron star has previously been found, this is the first time that the effects of high-energy emission from the probable young neutron star have been detected.Supernovae – the explosive final death throes of some massive stars – blast out within hours, and the brightness of the explosion peaks within a few months. The remains of the exploding star will continue to evolve at a rapid rate over the following decades, offering a rare opportunity for astronomers to study a key astronomical process in real time.Supernova 1987AThe supernova SN 1987A occurred 160,000 light-years from Earth in the Large Magellanic Cloud. It was first observed on Earth in February 1987, and its brightness peaked in May of that year. It was the first supernova that could be seen with the naked eye since Kepler's Supernova was observed in 1604.About two hours prior to the first visible-light observation of SN 1987A, three observatories around the world detected a burst of neutrinos lasting only a few seconds. The two different types of observations were linked to the same supernova event, and provided important evidence to inform the theory of how core-collapse supernovae take place. This theory included the expectation that this type of supernova would form a neutron star or a black hole. Astronomers have searched for evidence for one or the other of these compact objects at the center of the expanding remnant material ever since.Indirect evidence for the presence of a neutron star at the center of the remnant has been found in the past few years, and observations of much older supernova remnants –such as the Crab Nebula – confirm that neutron stars are found in many supernova remnants. However, no direct evidence of a neutron star in the aftermath of SN 1987A (or any other such recent supernova explosion) had been observed, until now.The James Webb Space Telescope has observed the best evidence yet for emission from a neutron star at the site of a well-known and recently-observed supernova known as SN 1987A. At left is a NIRCam (Near-Infrared Camera) image released in 2023. The image at top right shows light from singly ionized argon (Argon II) captured by the Medium Resolution Spectrograph (MRS) mode of MIRI (Mid-Infrared Instrument). The image at bottom right shows light from multiply ionized argon captured by the NIRSpec (Near-Infrared Spectrograph). Both instruments show a strong signal from the center of the supernova remnant. This indicated to the science team that there is a source of high-energy radiation there, most likely a neutron star.NASA, ESA, CSA, STScI, C. Fransson (Stockholm University), M. Matsuura (Cardiff University), M. J. Barlow (University College London), P. J. Kavanagh (Maynooth University), J. Larsson (KTH Royal Institute of Technology)Claes Fransson of Stockholm University, and the lead author on this study, explained: “From theoretical models of SN 1987A, the 10-second burst of neutrinos observed just before the supernova implied that a neutron star or black hole was formed in the explosion. But we have not observed any compelling signature of such a newborn object from any supernova explosion. With this observatory, we have now found direct evidence for emission triggered by the newborn compact object, most likely a neutron star.”Webb’s Observations of SN 1987AWebb began science observations in July 2022, and the Webb observations behind this work were taken on July 16, making the SN 1987A remnant one of the first objects observed by Webb. The team used the Medium Resolution Spectrograph (MRS) mode of Webb’s MIRI (Mid-Infrared
Released:
Feb 28, 2024
Format:
Podcast episode

Titles in the series (19)

James Webb Space Telescope Podcast OutlineEpisode 1: Introduction to the James Webb Space TelescopeWhat is the James Webb Space Telescope?Why is it so important?What are its goals?How does it work?What kind of discoveries can we expect from it?Episode 2: The Latest News and Discoveries from the James Webb Space TelescopeWhat are the latest images and data from the James Webb Space Telescope?What have we learned about the universe so far?What are some of the most exciting discoveries yet to come?Episode 3: The James Webb Space Telescope and the Search for ExoplanetsWhat are exoplanets?How can the James Webb Space Telescope help us find and study them?What are some of the most promising exoplanet candidates?Could the James Webb Space Telescope help us find evidence of life beyond Earth?Episode 4: The James Webb Space Telescope and the Early UniverseWhat can the James Webb Space Telescope tell us about the early universe?How did the first stars and galaxies form?What role did dark matter and dark energy play in the evolution of the universe?Episode 5: The James Webb Space Telescope and the Future of AstronomyHow will the James Webb Space Telescope change the way we study the universe?What are some of the most exciting scientific questions that it could answer?What can we expect from the next generation of space telescopes?Episode 6: The James Webb Space Telescope and the PublicHow can the public get involved with the James Webb Space Telescope?Where can you find images, data, and other information about the telescope?How can you talk to scientists and engineers who are working on the project?Episode 7: The James Webb Space Telescope and the Future of Space ExplorationWhat role will the James Webb Space Telescope play in future space exploration missions?How can it help us prepare for human missions to Mars and beyond?What are the ethical implications of the James Webb Space Telescope and other powerful space telescopes?Episode 8: The James Webb Space Telescope and Our Place in the UniverseWhat can the James Webb Space Telescope teach us about our place in the universe?Are we alone?What is our future as a spacefaring species?This show is part of the Spreaker Prime Network, if you are interested in advertising on this podcast, contact us at https://www.spreaker.com/show/5953955/advertisement