A cauldron of cosmic creation is being revealed in a new image from NASA’s James Webb Space Telescope. Webb has unveiled numerous stars formerly hidden by clouds of dust in a stellar nursery known as NGC 7129, which resides about 3,300 light-years from Earth.
Stars, the engines of elemental creation, have life cycles that begin with their birth in
molecular clouds – cold, dense regions of dust and gas. Because of these dusty
cocoons, young stars are often impossible to view by many telescopes,
particularly those incapable of capturing infrared light. Webb, however, has a
high degree of infrared sensitivity, allowing astronomers to peer through that
dust and study the beginning of the star life cycle.
Image: NGC
7129 (NIRCam Image)
NASA’s James Webb Space Telescope has revealed many
protostars and stars within the glowing gases of NGC 7129. Hot, atomic hydrogen
gas is shown here in the golden region, while cooler, molecular hydrogen gas,
shocked by embedded protostars, is represented in red.
Image: NASA, ESA, CSA, STScI;
Image Processing: Alyssa Pagan (STScI)
The stars from this cluster are in
different stages of their development, as the more massive stars form and
evolve the fastest. The most massive (and the most mature) is the region’s
luminous central star, LkH(alpha) 234 (pronounced Lick-H-alpha). This star,
which sports the image’s most prominent diffraction pattern, is a pre-main-sequence star weighing around 5 to 8 times the mass of our
Sun. Pre-main-sequence stars like these have mostly finished gathering mass and
are contracting under the force of gravity, causing their temperatures to rise.
In time, this star will fuse its own hydrogen like our Sun.
The cavity to its left, which
appears in gold and spans about 3.5 light-years, is the largest demonstration
of the central star’s impact. Outflows from an earlier stage of the star’s life
cycle carve into the dense molecular cloud of hydrogen. Both the outflows and
the star’s light energize the gas, causing it to glow. While much of this
hydrogen gas is blown away, a large amount is also compressed, creating the
conditions for even more stars to form.
Interactive: The Colorful Clouds of
NGC 7129
Follow link to
interact: NASA's
Webb Captures Commotion From Nebula’s Stellar Jets - NASA Science
Explore the details of NGC 7129 in to uncover the
hidden features and activity within the clouds of this young star-forming
region. In this interactive, venture to individual points of interest or follow
guided tours through related locations and stories. Launch in full-screen for
the complete interactive experience — or view directly in your browser.
NASA and STSc
A
few of these stars are visible within the cavity. Several of them are also
pre-main-sequence and emit stellar winds. The nearby bow shocks, the curved compressed gas that appears near the stars, are created as
those winds push into the energetic gas and create their own, smaller
cavities.
Together, the central and embedded stars
also create the sharp ridge seen at the top of the golden cavity. Their light
generates a hot environment that pushes against the colder and denser molecular
gas outside the cavity, and creates a boundary known as a photodissociation region. In this region, the molecules of hydrogen break down into atoms. By
influencing the temperature and chemistry of the region, this collection of
stars offers insight into how these molecular clouds will gradually erode over
millions of years.
The region to the right of the central
star narrates a different, but equally chaotic tale. This clumpy matter
represented in red hides much younger objects than those on the left:
protostars. The protostar stage is earlier than the pre-main-sequence stage and
occurs after molecular clouds of gas and dust initially compress and fragment.
As the protostars accumulate matter and
increase their mass, they eject outflows of superheated material. These outflows interact with the dense,
gray, translucent matter the protostars are wrapped within, creating shocks that cause a textured appearance. The red glow is also the result of
the interaction. Multiple outflows from multiple stars overlap from our point
of view, leading to the scene’s chaotic look.
Image: NGC 7129 Side-by-Side
(Spitzer and Webb Image)
NASA’s retired Spitzer Space Telescope observed the
gas and dust within NGC 7129; however, NASA’s James Webb Space Telescope’s
improved resolution shows more detailed gas and dust filaments, along with many
background galaxies.
Image: NASA, ESA, CSA, STScI,
NASA-JPL; Image Processing: Alyssa Pagan (STScI)
More
of these protostellar outflows can be seen at the upper left of the image, near
a blue-colored nebula. The center of this blue region hosts a protostar
surrounded by a donut-shaped disk of material. This disk casts a shadow against
the surrounding nebula, reminiscent of a similar structure known as the “Bat Shadow” that was observed by NASA’s Hubble Space Telescope.
Webb’s high spatial resolution reveals
many rich structures in the region’s gas, building on research done previously by NASA’s retired Spitzer Space Telescope. Astronomers will continue to
use this Webb data to study how the stars and protostars in this region
influence the surrounding gas and dust.
The James Webb Space Telescope is the
world’s premier space science observatory. Webb is solving mysteries in our
solar system, looking beyond to distant worlds around other stars, and probing
the mysterious structures and origins of our universe and our place in it. Webb
is an international program led by NASA with its partners, ESA (European Space
Agency) and CSA (Canadian Space Agency).
To learn more about Webb, visit: https://science.nasa.gov/webb
Source: NASA's Webb Captures Commotion From Nebula’s Stellar Jets - NASA Science



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