X-ray: NASA/CXC/Univ. of
Alabama/M. Muhibullah et al.; Optical: NASA/ESA/STScI; Image Processing:
NASA/CXC/SAO/N. Wolk
Using
NASA’s Chandra X-ray Observatory, scientists have discovered a new class of
objects behaving unlike any they have seen before. Astronomers suggest these
newly spotted objects in other galaxies may help solve not one, but two
long-standing questions in astrophysics.
These mysterious objects give off
unusually low-energy X-rays but intense levels of ultraviolet radiation. This
discovery is featured in a paper published Wednesday in Nature Astronomy.
“We’ve never encountered a group of objects that act like this,” said Mustafa Muhibullah of the University of Alabama who led the study. “Of course, the next step was to try to figure out what these things are.”
M101
with illustrated circles calling out seven of the newly-discovered objects.
X-ray: NASA/CXC/Univ. of Alabama/M. Muhibullah et al.; Optical: NASA/ESA/STScI; Image Processing: NASA/CXC/SAO/N. Wolk
The
researchers found a total of 84 of these “hypersoft X-ray sources” – so named
because they give such low-energy X-rays – in the six different galaxies they
searched, using data openly available to the public in the Chandra archive. Two
of the galaxies are spirals, M31 (the Andromeda galaxy) and M101 (the Pinwheel
galaxy), while the other four are ellipticals. They found hypersoft X-ray
sources both in regions of active star formation and areas where there are
older stars.
The team spotted the sources by finding
objects that appeared in Chandra images taken at the lowest X-ray energies but
vanished in higher-energy images. That means these objects give off far more
low-energy X-rays than high-energy ones. Because low-energy X-rays border
energetic ultraviolet radiation on the electromagnetic spectrum, the
researchers determined that these sources are producing large amounts of
energetic ultraviolet radiation as well.
It is unclear what types of objects are
responsible for these low-energy X-rays and intense ultraviolet radiation. The
team thinks they most likely involve a black hole, neutron star, or white dwarf
pulling material from a companion star. The material pulled from the companion
star is heated up to produce X-rays before falling onto the white dwarf or
neutron star, or into the black hole. Such binary systems have been seen
before, but not with such bright ultraviolet radiation and low-energy X-rays.
The discovery suggests that there may be
large populations of binary systems with energetic ultraviolet radiation that
have been undetected until now.
“These clandestine X-ray sources are
actually among the most energetic objects in galaxies, and they could be
solving two cosmic mysteries at once,” said Muhibullah.
Scientists think that some white dwarf
systems pulling material from companion stars may eventually explode as a
supernova – known as a Type Ia – that is critical for measuring the expansion
of the universe. These supernovae played a key role in discovering that this
expansion is accelerating. Astronomers have been looking for the stars that
turn into Type Ia supernovae for many years, so far without success.
“If we could find a way to spot these
Type Ia supernova explosions before they go off, that would be really
important,” said co-author Jimmy Irwin, also of the University of Alabama.
“Right now, we study them after they’ve exploded, and astronomers have struggled
to understand what is actually ignited.”
The other mystery these hypersoft X-ray
sources might explain is what strips electrons from gas between the stars in
some galaxies. This stripping of electrons is important to probe because it can
affect how quickly stars form and influence the life cycles of galaxies. Hot,
massive stars play a role, but they do not completely explain what is causing
this stripping. The intense levels of ultraviolet radiation from the hypersoft
X-ray sources may play a vital role.
Why were these hypersoft X-ray sources
not found until now? In addition to the low-energy X-ray output, which is very
difficult for X-ray telescopes to detect, the high-energy ultraviolet radiation
is readily absorbed by helium and hydrogen gas that fills the space between the
stars, creating a nearly impenetrable barrier to look through.
“By combing through the Chandra archive,
we were able to eliminate what used to be a blind spot for telescopes,” said
co-author Rosanne Di Stefano of the Center for Astrophysics | Harvard &
Smithsonian. “That’s how we found what appears to be a new class of cosmic
objects with remarkable qualities.”
NASA's Marshall Space Flight Center in
Huntsville, Alabama, manages the Chandra program. The Smithsonian Astrophysical
Observatory's Chandra X-ray Center controls science operations from Cambridge,
Massachusetts, and flight operations from Burlington, Massachusetts.
Read more from NASA’s Chandra X-ray Observatory
To learn more about NASA’s Chandra mission, visit: https://www.nasa.gov/chandra
Source: NASA’s Chandra Unveils Mysterious X-Ray Objects - NASA Science


No comments:
Post a Comment