Pandora, NASA’s newest exoplanet mission and the first satellite to launch through the agency's Astrophysics Pioneers program, is now making unique observations of worlds beyond our solar system and the stars they orbit. The mission will determine the atmospheric make-up of at least 20 exoplanets, including the presence of hazes, clouds, and water.
“Pandora’s data will help close a major
gap in our knowledge about planets and their host stars because, right now, we
can’t be entirely sure how the star’s light affects measurements of what makes
up exoplanet atmospheres,” said Elisa Quintana, Pandora’s principal
investigator at NASA’s Goddard Space Flight Center in
Greenbelt, Maryland. “We designed the Pandora spacecraft and its in-depth
observing program to better understand this vexing issue.”
Artist’s concept of NASA’s Pandora mission, which will
help scientists untangle the signals from exoplanets' atmospheres and their
stars.
NASA's Goddard Space Flight Center/Conceptual Image
Lab
Download high-resolution video and
images from NASA's Scientific Visualization Studio
The results of the mission will lay a firm foundation for interpreting
measurements by NASA’s James Webb Space Telescope, as well as future
observatories focused on finding habitable worlds. In fact, Pandora’s
near-infrared detector is a spare originally developed for Webb.
"The spacecraft is healthy and
all of the instruments are performing as well as we could have hoped,” said
Jordan Karburn, Pandora’s deputy project manager at Lawrence Livermore National
Laboratory in California. “Our team’s hard work throughout the commissioning
process has paid off, and we can now confidently start science."
This artist’s concept summarizes NASA’s Pandora
mission and its science goals. Pandora will repeatedly observe multiple planets
and their host stars in both visible and near-infrared light. These
measurements will enable astronomers to separate chemical fingerprints detected
in a planet’s atmosphere from potentially misleading signals originating from
its host star.
NASA/Sophia Roberts
Download high-resolution video and
images from NASA's Scientific Visualization Studio
Launched into low Earth orbit on Jan. 11, Pandora is an ambitious small
satellite (SmallSat) funded by NASA’s Astrophysics Pioneers program. Pioneers
are designed to explore compelling questions about the universe with
fast-paced, low-cost missions that require a higher-than-usual tolerance for
failure.
Three factors make Pandora unique.
It carries a novel all-aluminum telescope about 18 inches (45 centimeters) in
diameter, it will study planets and their host stars simultaneously in both
visible and infrared light, and it will observe targets for a much longer time
than flagship observatories like Webb are able to.
Telescopes can sample a planet’s
atmosphere in systems where the planet passes in front of its star as seen from
our perspective. During this event, called a transit, some starlight skims the
planet’s atmosphere before making its way to us. As this light interacts with
atmospheric molecules, their chemical fingerprints become embedded in it. For
each molecule, astronomers see brightness dips at characteristic
wavelengths.
But our instruments also see light
from the whole star, not just what grazes the planet. Stellar surfaces aren’t
uniform. They sport hotter, brighter areas called faculae and cooler, darker
regions similar to sunspots. Both can grow, shrink, and change position as the
star rotates.
“Water is one of the most important molecules we can measure to understand the composition and physical conditions of an exoplanet atmosphere,” said Benjamin Rackham, a team member at the Massachusetts Institute of Technology in Cambridge. “But features on the star can distort the water signal we’re searching for. Pandora is designed to disentangle the signals from the planet and the star, helping us to understand the planets more accurately and laying the groundwork for the eventual study of planets that could harbor life.”
Watch to learn more about NASA’s Pandora mission, which will
revolutionize the study of exoplanet atmospheres.
NASA's
Goddard Space Flight Center
Download high-resolution video and
images from NASA's Scientific Visualization Studio
Pandora’s telescope, jointly developed by Livermore and Corning Specialty
Materials in Keene, New Hampshire, and its detectors make up the mission’s
heart. The detectors will capture the star’s brightness in visible light and
its near-infrared spectrum at the same time, while also obtaining a
near-infrared spectrum from the planet when it transits the star. Over the
course of its year-long primary mission, Pandora will observe at least 20
exoplanets 10 times with a long-duration stare covering 24 hours, with a
transit included in each observation.
“Pandora’s advantage is its ability
to observe targets for extended periods at multiple wavelengths, something
high-demand flagship missions like Webb cannot regularly do,” said Knicole
Colón, the mission’s project scientist at NASA Goddard. “Combining Pandora and
Webb data will uniquely enable scientists to determine the properties
of stellar surfaces and cleanly separate star and planetary signals.”
Pandora is led by NASA’s Goddard
Space Flight Center. Lawrence Livermore National Laboratory provides the
mission’s project management and engineering. Pandora’s telescope was
manufactured by Corning and developed collaboratively with Livermore, which also
developed the imaging detector assemblies, the mission’s control electronics,
and all supporting thermal and mechanical subsystems. The infrared sensor was
provided by NASA Goddard. Blue Canyon Technologies provided the bus, performed
spacecraft assembly, integration and environmental testing, and is providing
mission operations support. NASA’s Ames
Research Center in California’s Silicon Valley performs the mission’s data
processing. Pandora’s science data is available at the NASA
Exoplanet Archive, which is operated by IPAC at the California Institute of Technology in Pasadena. The University
of Arizona leads mission operations for Pandora and contributes to its science
program. Many additional universities also support the science team.
To learn more about the Pandora mission, please visit: https://science.nasa.gov/mission/pandora/
Source: NASA’s Pandora Mission Begins Study of Exoplanets, Host Stars - NASA Science


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