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NASA is about to launch a space telescope that could change how we see the universe

The Nancy Grace Roman Space Telescope, named after NASA's first chief astronomer, will launch on Aug. 30.
NASA
The Nancy Grace Roman Space Telescope, named after NASA's first chief astronomer, will launch on Aug. 30.

The universe is a strange place — filled with exploding stars, ancient galaxies, and unseen worlds. Now, astronomers are about to get a brand new tool to explore it.

For new discoveries, everyday mysteries, and the science behind the headlines, follow NPR’s Short Wave podcast.

The $4.3-billion Nancy Grace Roman Space Telescope is scheduled for launch Aug. 30. Named for NASA’s first chief astronomer, the observatory is expected to reveal new information about the expansion of the universe and discover multitudes of planets orbiting distant stars.

Roman, as it is known to its friends, has an unusual history. About 15 years ago NASA was making plans to build a space telescope that could, among other things, search for exploding stars known as Type 1A supernovas. These supernovas were used as a kind of cosmological measuring stick to uncover a mysterious force called dark energy that was causing the universe to expand — a discovery that earned the Nobel Prize in 2011.

Cosmologist Daniel Scolnic at Duke University says finding more of them would be key to better understanding that expansion.

As NASA was developing plans for this new telescope, a call came in from the government office in charge of surveillance satellites.

“The National Reconnaissance Office reached out to NASA,” Scolnic says, “saying, ‘We have this amazing satellite sitting in a hangar that we’re not using. And what what do you guys think about instead of pointing downwards, we point upwards, and you guys use it?'”

NASA said yes. It took some substantial modifications, but now that old satellite is set to become NASA’s next major space observatory.

Scolnic says that the new observatory could fundamentally change the scientific model that astronomers use to understand our universe.

“In the last few years, there have been measurements saying that model might be wrong — and that’s something that Roman will absolutely nail, whether the model’s right or wrong,” he says.

Another goal of the telescope is to spend a month surveying all the stars in the Milky Way galaxy. Julie McEnery is Roman’s project scientist. She says even though Roman has broadly the same sensitivity and sharpness of vision as the currently orbiting Hubble Space Telescope, its design lets it do things much faster.

“That one month of observations to survey our Milky Way galaxy would take about a century with Hubble,” says McEnery.

Instead of focusing on a single object, Roman is designed to make catalogs of large swaths of the sky, and McEnery says these catalogs will be available to everyone, not just academics.

“You can be a teacher in a high school in Kentucky and your students have the opportunity to see Roman data at the same time as a professor in Princeton,” she says.

One professor eager to get his hands on Roman data is Scott Gauti at The Ohio State University. Along with colleagues, Gauti developed a technique for detecting planets around distant stars. It’s called gravitational microlensing, and it measures the way those planets bend the starlight that passes them by.

Albert Einstein described the idea in 1936 but thought it would be impractical. New technology has proven him wrong — and Gauti expects Roman will find tons of planets that way.

“We’re looking for planets that are just completely undetectable by any other method,” Gauti says. That includes planets at the center of our galaxy, “that are very analogous to our own solar system planets like Jupiter, Saturn, Uranus, and Neptune.”

In addition to new planets, Roman should also reveal new galaxies, helping astronomers to get a better idea of the large-scale structure of the universe.

But predicting what will be Roman’s greatest accomplishments over the course of its five-year-mission is a tricky business.

“The history of astronomy really has shown that when you get a new capability, and especially a survey capability, you learn something new, something unexpected,” says Wendy Freedman, an astronomer at the University of Chicago. “Often that turns out to be the most exciting part of a new facility. So I am completely open to what this telescope will find.”

Joe Palca is a science correspondent for NPR. Since joining NPR in 1992, Palca has covered a range of science topics — everything from biomedical research to astronomy. From 2011 to 2020 he produced stories that explored the minds and motivations of scientists and inventors as part of his series, Joe's Big Idea. Palca is also the founder of NPR Scicommers – A science communication collective.

Palca began his journalism career in television in 1982, working as a health producer for the CBS affiliate in Washington, DC. In 1986, he left television for a seven-year stint as a print journalist, first as the Washington news editor for Nature, and then as a senior correspondent for Science Magazine.

In October 2009, Palca took a six-month leave from NPR to become science writer in residence at The Huntington Library, Art Collections, and Botanical Gardens.

Palca has won numerous awards, including the National Academies Communications Award, the Science-in-Society Award of the National Association of Science Writers, the American Chemical Society's James T. Grady-James H. Stack Award for Interpreting Chemistry for the Public, the American Association for the Advancement of Science Journalism Prize, and the Victor Cohn Prize for Excellence in Medical Writing. In 2019, Palca was elected to the American Academy of Arts and Sciences for outstanding achievement in journalism.

With Flora Lichtman, Palca is the co-author of Annoying: The Science of What Bugs Us (Wiley, 2011).

He comes to journalism from a science background, having received a Ph.D. in psychology from the University of California at Santa Cruz, where he worked on human sleep physiology.

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