6 Min Read

NASA’s Webb Investigates Eternal Sunrises, Sunsets on Distant World

Illustration of a planet, zoomed in on the planet’s dayside/nightside boundary. The planet encompasses takes up the full image. At the bottom left, the image is dark, depicting the nightside covering the planet in a dark shadow. In the right side of the image, the planet has a fuzzy orange-pink atmosphere with hints of latitudinal wispy cloud bands. The right upper corner is bright, where the star (not illustrated) shines.

Artists concept of WASP-39 b (full image below).

Near-infrared spectral analysis of terminator confirms differences in morning and evening atmosphere

Researchers using NASA’s James Webb Space Telescope have finally confirmed what models have previously predicted: An exoplanet has differences between its eternal morning and eternal evening atmosphere. WASP-39 b, a giant planet with a diameter 1.3 times greater than Jupiter, but similar mass to Saturn that orbits a star about 700 light-years away from Earth, is tidally locked to its parent star. This means it has a constant dayside and a constant nightside—one side of the planet is always exposed to its star, while the other is always shrouded in darkness.

Using Webb’s NIRSpec (Near-Infrared Spectrograph), astronomers confirmed a temperature difference between the eternal morning and eternal evening on WASP-39 b, with the evening appearing hotter by roughly 300 Fahrenheit degrees (about 200 Celsius degrees). They also found evidence for different cloud cover, with the forever morning portion of the planet being likely cloudier than the evening.

Image A: Artist Concept WASP-39 b

Illustration of a planet, zoomed in on the planet’s dayside/nightside boundary. The planet encompasses takes up the full image. At the bottom left, the image is dark, depicting the nightside covering the planet in a dark shadow. In the right side of the image, the planet has a fuzzy orange-pink atmosphere with hints of latitudinal wispy cloud bands. The right upper corner is bright, where the star (not illustrated) shines.
This artist’s concept shows what the exoplanet WASP-39 b could look like based on indirect transit observations from NASA’s James Webb Space Telescope as well as other space- and ground-based telescopes. Data collected by Webb’s NIRSpec (Near-Infrared Spectrograph) show variations between the eternal morning and evening atmosphere of the planet.

Astronomers analyzed the 2- to 5-micron transmission spectrum of WASP-39 b, a technique that studies the exoplanet’s terminator, the boundary that separates the planet’s dayside and nightside. A transmission spectrum is made by comparing starlight filtered through a planet’s atmosphere as it moves in front of the star, to the unfiltered starlight detected when the planet is beside the star. When making that comparison, researchers can get information about the temperature, composition, and other properties of the planet’s atmosphere.

“WASP-39 b has become a sort of benchmark planet in studying the atmosphere of exoplanets with Webb,” said Néstor Espinoza, an exoplanet researcher at the Space Telescope Science Institute and lead author on the study. “It has an inflated, puffy atmosphere, so the signal coming from starlight filtered through the planet’s atmosphere is quite strong.”

Previously published Webb spectra of WASP-39b’s atmosphere, which revealed the presence of carbon dioxide, sulfur dioxide, water vapor, and sodium, represent the entire day/night boundary – there was no detailed attempt to differentiate between one side and the other.

Now, the new analysis builds two different spectra from the terminator region, essentially splitting the day/night boundary into two semicircles, one from the evening, and the other from the morning. Data reveals the evening as significantly hotter, a searing 1,450 degrees Fahrenheit (800 degrees Celsius), and the morning a relatively cooler 1,150 degrees Fahrenheit (600 degrees Celsius).

Image B: Transmission Spectra

“It’s really stunning that we are able to parse this small difference out, and it’s only possible due Webb’s sensitivity across near-infrared wavelengths and its extremely stable photometric sensors,” said Espinoza. “Any tiny movement in the instrument or with the observatory while collecting data would have severely limited our ability to make this detection. It must be extraordinarily precise, and Webb is just that.”

Extensive modeling of the data obtained also allows researchers to investigate the structure of WASP-39 b’s atmosphere, the cloud cover, and why the evening is hotter. While future work by the team will study how the cloud cover may affect temperature, and vice versa, astronomers confirmed gas circulation around the planet as the main culprit of the temperature difference on WASP-39 b.

On a highly irradiated exoplanet like WASP-39 b that orbits relatively close to its star, researchers generally expect the gas to be moving as the planet rotates around its star: Hotter gas from the dayside should move through the evening to the nightside via a powerful equatorial jet stream. Since the temperature difference is so extreme, the air pressure difference would also be significant, which in turn would cause high wind speeds.

Image C: Transit Light Curve

Using General Circulation Models, 3-dimensional models similar to the ones used to predict weather patterns on Earth, researchers found that on WASP-39 b the prevailing winds are likely moving from the night side across the morning terminator, around the dayside, across the evening terminator and then around the nightside. As a result, the morning side of the terminator is cooler than the evening side. In other words, the morning side gets slammed with winds of air that have been cooled on the nightside, while the evening is hit by winds of air heated on the dayside. Research suggests the wind speeds on WASP-39 b can reach thousands of miles an hour!

“This analysis is also particularly interesting because you’re getting 3D information on the planet that you weren’t getting before,” added Espinoza. “Because we can tell that the evening edge is hotter, that means it’s a little puffier. So, theoretically, there is a small swell at the terminator approaching the nightside of the planet.”

The team’s results have been published in Nature.

The researchers will now look to use the same method of analysis to study atmospheric differences of other tidally locked hot Jupiters, as part of  Webb Cycle 2 General Observers Program 3969.

WASP-39 b was among the first targets analyzed by Webb as it began regular science operations in 2022. The data in this study was collected under Early Release Science program 1366, designed to help scientists quickly learn how to use the telescope’s instruments and realize its full science potential.

The James Webb Space Telescope is the world’s premier space science observatory. Webb is solving mysteries in our solar system, looking beyond to distant worlds around other stars, and probing the mysterious structures and origins of our universe and our place in it. Webb is an international program led by NASA with its partners, ESA (European Space Agency) and CSA (Canadian Space Agency).

Downloads

Right click any image to save it or open a larger version in a new tab/window via the browser’s popup menu.

View/Download all image products at all resolutions for this article from the Space Telescope Science Institute.

The research results have been published in Nature.

Media Contacts

Rob Gutrorob.gutro@nasa.gov
NASA’s Goddard Space Flight Center, Greenbelt, Md.

Hannah Braun hbraun@stsci.edu Christine Pulliamcpulliam@stsci.edu
Space Telescope Science Institute, Baltimore, Md.

ARTICLE: What is an Exoplanet?

VIDEO: How do we learn about a planet’s Atmosphere?

VIDEO: Reading the Rainbow of Light from an Exoplanet’s Atmosphere

VIDEO: Science Snippets – Exoplanets

BLOG: Reconnaissance of Potentially Habitable Worlds with NASA’s Webb

More Webb News – https://science.nasa.gov/mission/webb/latestnews/

More Webb Images – https://science.nasa.gov/mission/webb/multimedia/images/

Webb Mission Page – https://science.nasa.gov/mission/webb/

What is a exoplanet?

What is the Webb Telescope?

SpacePlace for Kids

En Español

Para Niños : Qué es una exoplaneta?

Ciencia de la NASA

NASA en español 

Space Place para niños

https://science.nasa.gov/missions/webb/nasas-webb-investigates-eternal-sunrises-sunsets-on-distant-world/


September 2024
M T W T F S S
 1
2345678
9101112131415
16171819202122
23242526272829
30  

About Us

Welcome to encircle News! We are a cutting-edge technology news company that is dedicated to bringing you the latest and greatest in everything tech. From automobiles to drones, software to hardware, we’ve got you covered.

At encircle News, we believe that technology is more than just a tool, it’s a way of life. And we’re here to help you stay on top of all the latest trends and developments in this ever-evolving field. We know that technology is constantly changing, and that can be overwhelming, but we’re here to make it easy for you to keep up.

We’re a team of tech enthusiasts who are passionate about everything tech and love to share our knowledge with others. We believe that technology should be accessible to everyone, and we’re here to make sure it is. Our mission is to provide you with fun, engaging, and informative content that helps you to understand and embrace the latest technologies.

From the newest cars on the road to the latest drones taking to the skies, we’ve got you covered. We also dive deep into the world of software and hardware, bringing you the latest updates on everything from operating systems to processors.

So whether you’re a tech enthusiast, a business professional, or just someone who wants to stay up-to-date on the latest advancements in technology, encircle News is the place for you. Join us on this exciting journey and be a part of shaping the future.

Podcasts

TWiT 998: Artisanal Locally-Sourced Dopamine – Amazon Returns to Office, CA AI Bill, Elon Backs Down This Week in Tech (Audio)

Amazon Returns to Office, CA AI Bill, Elon Backs Down Discussion of the iPhone 16 Qualcomm Approached Intel About a Takeover in Recent Days Hezbollah Pagers Explode in Apparent Attack Across Lebanon Elon Musk's X Backs Down in Brazil Bluesky tops 10 million users Newsom signs California bill to limit 'addictive' social media feeds for kids The AI bill driving a wedge through Silicon Valley Microsoft Would Restart Three Mile Island Nuclear Plant to Power AI Bill requiring AM radio in new cars gets closer to law Mozilla exits the fediverse and will shutter its Mastodon server in December Amazon tells employees to return to office five days a week Host: Leo Laporte Guests: Ben Parr, Alex Lindsay, and Rob Pegoraro Download or subscribe to this show at https://twit.tv/shows/this-week-in-tech Get episodes ad-free with Club TWiT at https://twit.tv/clubtwit Sponsors: NetSuite.com/TWIT canary.tools/twit – use code: TWIT expressvpn.com/twit shopify.com/twit veeam.com
  1. TWiT 998: Artisanal Locally-Sourced Dopamine – Amazon Returns to Office, CA AI Bill, Elon Backs Down
  2. TWiT 997: Put an OLED on it – iPhone Event 2024, $700 PS5, AI in AU
  3. TWiT 996: The Quiet Office Crackdown – Starlink Backtracks, AI Royalty Heist
  4. TWiT 995: The Story of Us – AnandTech Shuts Down, Brazil Bans X, Alexa Revamp
  5. TWiT 994: Time Moves On, but I Don't – Pavel Durov Arrested, Hacking Bikes, Apple Event Rumors