For the first time, astronomers have used NASA鈥檚 James Webb Space Telescope (JWST) to take a direct image of a planet outside our solar system. The exoplanet is a gas giant, meaning it has no rocky surface and could not be habitable.
NASA released the image, as seen through four different light filters, on Sept. 1. The release shows how Webb鈥檚 powerful infrared gaze can easily capture worlds beyond our solar system, pointing the way to future observations that will reveal more information than ever before about exoplanets.
鈥淭his is just the beginning and it's already exciting!鈥 said Eileen Gonzales, 51 Pegasi b Postdoctoral Fellow in the 麻豆视频 & 麻豆视频' Department of Astronomy and a member of the observation team. 鈥淭he improvements in our understanding we are getting with JWST are so impressive. I can't wait to see what else we will learn about exoplanet atmospheres, chemistry, formation, and evolution from upcoming and future JWST observations.鈥
The exoplanet in Webb鈥檚 image, called HIP 65426 b, is about six to 12 times the mass of Jupiter, and these observations could help narrow that down even further. It is young as planets go 鈥 about 15 to 20 million years old, compared to our 4.5-billion-year-old Earth.
鈥淭his is a transformative moment, not only for Webb but also for astronomy generally,鈥 said Sasha Hinkley, associate professor of physics and astronomy at the University of Exeter in the United Kingdom, who led these observations with a large international collaboration. Webb is an international mission led by NASA in collaboration with its partners, ESA (European Space Agency) and CSA (Canadian Space Agency).
Astronomers discovered the planet in 2017 using the SPHERE instrument on the European Southern Observatory鈥檚 Very Large Telescope in Chile and took images of it using short infrared wavelengths of light. Webb鈥檚 view, at longer infrared wavelengths, reveals new details that ground-based telescopes would not be able to detect because of the intrinsic infrared glow of Earth鈥檚 atmosphere.
Researchers have been analyzing the data from these observations and are preparing a paper they will submit to journals for peer review. But Webb鈥檚 first capture of an exoplanet already hints at future possibilities for studying distant worlds.
Since HIP 65426 b is about 100 times farther from its host star than Earth is from the Sun, it is sufficiently distant from the star that Webb can easily separate the planet from the star in the image.
Webb鈥檚 Near-Infrared Camera (NIRCam) and Mid-Infrared Instrument (MIRI) are both equipped with coronagraphs, which are sets of tiny masks that block out starlight, enabling Webb to take direct images of certain exoplanets like this one. NASA鈥檚 Nancy Grace Roman Space Telescope, slated to launch later this decade, will demonstrate an even more advanced coronagraph.
Taking direct images of exoplanets is challenging because stars are so much brighter than planets. The HIP 65426 b planet is more than 10,000 times fainter than its host star in the near-infrared, and a few thousand times fainter in the mid-infrared.
In each filter image, the planet appears as a slightly differently shaped blob of light. That is because of the particulars of Webb鈥檚 optical system and how it translates light through the different optics.
鈥淥btaining this image felt like digging for space treasure,鈥 said Aarynn Carter, a postdoctoral researcher at the University of California, Santa Cruz, who led the analysis of the images. 鈥淎t first all I could see was light from the star, but with careful image processing I was able to remove that light and uncover the planet.鈥
While this is not the first direct image of an exoplanet taken from space 鈥 the Hubble Space Telescope has captured direct exoplanet images previously 鈥 HIP 65426 b points the way forward for Webb鈥檚 exoplanet exploration.
This story is based on a written by Elizabeth Landau.