Short Wave - Want to spend a year living in NASA's Mars simulation?
Episode Date: July 31, 2026Have you ever wanted to be an astronaut without risking your life in space? If so, we have the perfect opportunity for you. NASA is calling for people with a science background to apply for a simulate...d mission to the Moon and Mars. Four adults will spend a year isolated in two enclosures meant to simulate both traveling through deep space and living on Mars. Learn whether you fit the profile and what NASA researchers hope to learn from the mission in this episode.Interested in more space news? Email us your question at shortwave@npr.org and we may cover it in an upcoming segment.Support public media with NPR+ and enjoy perks for over 25 podcasts like this one. It includes perks like bonus episodes, early access, archive access, curated playlists and sponsor-free listening. Learn more at plus.npr.org. See pcm.adswizz.com for information about our collection and use of personal data for sponsorship and to manage your podcast sponsorship preferences.NPR Privacy Policy
Transcript
Discussion (0)
You're listening to Shortwave from NPR.
Hey, Shura Waver, is Regina Barber here, and you know what time it is.
It's time for us to talk space news for a whole episode.
It's spacing out with Gina.
Here today is my co-host, my fellow co-creator and space cadet from all things considered, Scott Detrow.
So excited to be back.
Favorite time of the month.
Let's space out.
Yeah, yeah.
Okay.
And joining us, Scott, is a newcomer, NPR's science correspondent, R.A.
Welcome, Ari.
Thank you.
And to start, did you know that in space, no one can hear you scream?
But here on Earth, in the room next door, my cat can.
Ari, welcome to spacing out.
Oh, I'm so glad to be here.
It's going to be great.
I promise, Ari.
Okay, we're going to talk about NASA's recruitment of volunteers to simulate a year-long mission to the moon and then Mars.
I have a question for both of you, though.
Would either of you do this simulation, like a year-long simulation?
I think I would hold out for actually going to Mars if I was going to.
Would you really want to go?
Oh my gosh, not me.
I mean, I would be more interested in that than pretending to go to Mars in Texas.
Fair.
What about you, Ari?
Would you simulate going to the moon than Mars?
I don't think you could get me to do it either.
I just feel like to clear the calendar for that long of a time to go to Houston.
You know, I mean, I'd be happy to go to Houston for like a weekend.
Right, not a year, though.
In a room.
In an enclosure might be a hard sell.
So I would miss my family too much.
And honestly, like even being with them for a few days and like not going to work and not leaving the house, turn me into a monster.
So I am not the person to recruit for these missions.
Yeah, I guess I will say there's blips of time where I'm like, this would seem appealing to just kind of hide for a year.
But yeah, I think it would get old quickly.
Yeah.
I'm not.
I don't think I would be a team person after.
after a week.
Well, does sugar help, Gina?
Because I'm bringing you and Scott
a story about sugar molecules
found in space. How about
that for a segue?
You did amazing, Ari. I loved it.
I appreciate it. Okay. And we'll end
this spacing out party with a story
about a spacecraft that just woke up
on the edge of our solar system.
Rise and shine.
So today on the show, we got
isolation, sugar, and the
edge of our solar system.
Real heady stuff.
This is existential.
Yeah.
You're listening to Shortwave, the science podcast from NPR.
Okay, Scott, Ari, should we start with human isolation?
I mean, no bigger question.
But what I'm wondering is if these astronauts are not actually astronauts because they're not going to Mars,
what exactly is it that NASA is focusing on here?
Well, right now, people can apply to join a year-long four-person simulation.
mission to the moon and Mars. It'll take place at the Johnson Space Center in Houston and could start as soon as August of next year.
These people are, of course, not actually going to the moon or Mars, though. So what is it that they're doing when they don't leave Houston?
Yeah, so they spend most of their time isolated in a 650-ish square foot enclosure. And they're simulating travel through deep space. And for two months in the middle, they'll move to a different slightly bigger structure to simulate surface living.
on Mars. And this structure will have areas for sleeping, recreation, work, medical and food areas,
plus an airlock in a place to grow crops. They'll do science experiments and test out protocols for
living and working in deep space, but there's one big difference from actually being in space.
They'll still be living under Earth's gravity. And that's one of the things that scientists
wonder about long-term, long-distance space travel, is how being,
in zero gravity or low gravity that long affects your body.
Since that can't be tested out, what exactly is it that NASA is hoping to learn here?
Yeah, so one of the big objectives is to understand how the crew deals with stress and isolation.
Will they all get along?
And how will they handle such long-term separation from their loved ones?
One thing they'll test is how the crew deals with communication delays.
Because depending on where Mars is in the orbit, it could take a hello 20 minutes to get to Earth
and 20 minutes to hear back, which also means no instant communication with mission control.
In current and past real-life missions, astronauts have been able to talk to loved ones or mission control in real time.
But a Mars mission could last two to three years.
So they'll be dealing with these communication delays for a while.
I think it's fair to say.
It takes a special kind of person to volunteer for a not-real space mission for a year.
And I'm just imagining the conversations with your spouse or kids like, hey, I'm going to Mars.
And by Mars, I mean this fake Mars.
I mean Houston.
room. So I mean, but like, but that being said, the science is, like, important. So I'm curious,
what kind of people is NASA looking for? So the application asks for people 30 to 55 so we can go,
though they said that they'll consider other ages who can pass their physical and psychological tests.
They want people with science backgrounds and astronaut-like qualities. So resilient people who can
work independently and with a team. When, if somebody's been interested by our conversation about this,
winter applications do.
NASA's website says the deadline is ongoing.
Okay.
Second topic, which was intriguing.
Sugar in space?
What's going on here?
So researchers have long wondered how life on Earth started, like where did the ingredients
come from and how did they get here?
Big questions.
Some of the biggest.
Some scientists have been trying to answer it by scanning our galaxy for the building
blocks of life and their precursors.
One particularly good place to look is something called the interstellar medium.
which is basically the space in between the stars.
So this might be a dumb question.
No.
But are there things in that space?
Or I thought it was just space.
A vacuum.
Right.
I thought space.
So in certain areas, there is.
So my first research project was on the interstellar medium.
Shout out to Kristen Larson, my advisor.
It basically consists of all kinds of compounds in the form of dust particles and ices.
Okay.
It turns out that this interstellar medium, Scott, is an amazing,
chemical factory that can produce a range of organic molecules, including ones needed to fashion
RNA, proteins, and cell membranes.
And I assume a kind of sugar, perhaps?
That's right.
A team of scientists pointed two telescopes in Spain at the interstellar medium, that rich
chemical brew in the center of our Milky Way galaxy, and they scanned it for radio signals
of different molecules, which is how they found a four-carbon sugar called erythrolose.
I've heard of like glucose and fructose, but like, how do you say that?
Erythralose.
Yeah, I don't.
That feels like an Odyssey character.
Yeah.
It's not that common, but it's found in raspberries.
Athosco and Jimenez Serra and astrophysicist at the Center for Astrobiology in Spain says the discovery, which was published in nature astronomy, was thrilling.
Your heart starts beating, like super fast, like, you get super excited.
Very nice feeling.
Why exactly is she so excited?
Why is this such a big deal?
Well, living things may can use sugars,
but we don't know how they come about without life around.
These results suggest that sugars may have been made inside a molecular cloud
before stars or planets formed.
They could then be incorporated into, say, an asteroid
as it's being built from the material in the interstellar medium.
And then such a space rock could have struck the early Earth,
perhaps delivering a subset of key ingredients,
sweetening the stage for the emergence of life here.
And...
I saw what he did there.
And maybe elsewhere?
Yep, exactly, Scott.
I spoke with Anheil Mohadro and organic geochemist
at NASA's Goddard Space Flight Center
who wasn't involved in the research.
And he says this discovery adds to evidence
that these ingredients may have given rise to life not just on Earth.
So it's my guess that if we were to find life elsewhere,
it's going to be using the same kind of chemistry.
There's no reason to think that life is going to be based on something else.
So let's talk about a spacecraft on an ongoing journey from here to elsewhere,
the spacecraft on the edge of our solar system.
Yeah.
So this is the NASA's New Horizons spacecraft.
It's famous for taking those first detailed images of Pluto's surface.
Right, that heart on Pluto, those pictures were so vivid.
They were so beautiful, Scott.
So since then, New Horizons has continued to travel towards the edges of our solar system.
Then last year, it went into about,
11 months of hibernation. It does this periodically to save energy. And now it's woken up about
six billion miles away from us and counting. Not unlike Ryan Gosling and Project Calmerie.
He was even further. What is the spacecraft doing?
It's studying the edges of our solar system. So it's in the Kuiper belt right now. And this is
the region where Pluto lives. There's a lot of other icy objects. The end of this belt is basically
the end of our solar system. So our solar system. So our solar belt is,
system is in this bubble that the sun makes called the heliosphere. And that heliosphere protects the
solar system from high energy radiation coming from other parts of the galaxy. Both of the Voyager
spacecrafts have traveled out of the solar system, and they studied the edge of that bubble along the way.
But scientists still don't know too much about this sphere of protection that the sun creates. And as new
horizons sails through the limits of our solar system, it might be able to gather more clues on how that
bubble works or even what it is.
We talked earlier about how it can take 20 minutes for a message to go back between Earth
and Mars.
This is something that is six billion miles away.
How does this spacecraft communicate with Earth?
Scientists can talk to spacecraft this far out because of NASA's deep space network.
It's this array, Scott, of three radio dishes on Earth, one in California, one in Spain,
one in Australia, and these things are giant.
The 70-meter antenna would, if you put it in the football stadium,
it would take up the whole space.
Yeah, it's huge.
So that's Alice Bowman, a spacecraft engineer,
and the mission operations manager for New Horizons.
And she was just so excited to be part of this New Horizons mission,
which is truly a testament to human ingenuity.
Much like this recurring segment.
It's true.
It's a testament to human ingenuity.
Absolutely.
Our ingenuity, we thought it up.
So Scott,
Ari, thank you for spacing out with me.
Ari, was it okay?
It was great.
The cat didn't even notice.
The cat didn't even notice.
Cats typing an application to be in a simulated Mars mission for a year.
Yeah, he would go.
He's got nothing on his calendar.
I guess cats would be great.
They would be amazing.
Yeah, send cats to Mars.
Well, thank you.
Thank you both for being here.
Any time.
Thank you for having me.
If you like this spacing out episode,
and you have a friend that loves Space 2, share it with them.
It will help our show.
And hey, give us a follow on the NPR app
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So you'll never miss a new episode
or a new episode of Spacing Out.
This episode was produced by Berlin McCoy and Megan Lim.
It was edited by Christopher and Taliatta,
Omina Khan, and our showrunner Rebecca Ramirez.
Tyler Jones checked the facts.
Robert Rodriguez and Valentina Rodriguez-Sanchez
for the audio engineers.
I'm Ari Daniel.
And I'm Regina Barber.
Thank you for listening to Shortwave, the science podcast from NPR.
