Skip to main content
  1. Home
  2. Space
  3. News

See the very first image (and first selfie!) from James Webb

Add as a preferred source on Google

The James Webb Space Telescope is in its final orbit and has its science instruments turned on, but it’ll still be several months before the world’s most powerful space telescope is ready to collect science data. That’s because the telescope not only needs to reach a stable temperature but also because it needs to go through the careful and complex process of aligning its mirrors. But that doesn’t mean there’s nothing to see from this brand new telescope — in fact, NASA has just released both the first image captured by the telescope and even a selfie snapped by one of the telescope’s cameras.

The first image might not look like much, but it’s an indication that Webb’s NIRCam instrument is working to collect light from its target — a particularly bright star called HD 84406. The 18 points of light in the image represent each of the 18 segments of the telescope’s primary mirror, which are gradually being brought into alignment by making nanometer adjustments. “The entire Webb team is ecstatic at how well the first steps of taking images and aligning the telescope are proceeding,” said Marcia Rieke, principal investigator for the NIRCam instrument in a statement. “We were so happy to see that light makes its way into NIRCam.”

An image mosaic created by pointing the telescope at a bright, isolated star in the constellation Ursa Major known as HD 84406.
This image mosaic was created by pointing the telescope at a bright, isolated star in the constellation Ursa Major known as HD 84406. This star was chosen specifically because it is easily identifiable and not crowded by other stars of similar brightness, which helps to reduce background confusion. NASA

The image is a mosaic, stitched together from a huge 54 gigabytes of raw data captured over a 25-hour period. This is just a portion of the full mosaic, showing the same star imaged 18 times. This is invaluable data for the team as they work on aligning the mirrors to bring the telescope into focus.

Recommended Videos

In addition, the NIRCam instrument used a special lens to snap an image of the telescope itself, showing the distinctive hexagon-shaped mirror segments in the telescope’s first selfie. You can see one of the segments glowing brightly as that segment was pointed toward a star, while the other segments are currently at different alignments.

Selfie of a James Webb telescope mirror created using a specialized pupil imaging lens inside of the NIRCam instrument.
This “selfie” was created using a specialized pupil imaging lens inside of the NIRCam instrument that was designed to take images of the primary mirror segments instead of images of space. This configuration is not used during scientific operations and is used strictly for engineering and alignment purposes. In this case, the bright segment was pointed at a bright star, while the others aren’t currently in the same alignment. This image gave an early indication of the primary mirror alignment to the instrument. NASA

Over the next few months, the images captured by Webb will become sharper and show more details as the mirrors are aligned and the telescope’s other three instruments reach their stable temperatures and start capturing data as well. For now, the images show that the telescope is healthy and operating for the first time. “Launching Webb to space was, of course, an exciting event, but for scientists and optical engineers, this is a pinnacle moment, when light from a star is successfully making its way through the system down onto a detector,” said Michael McElwain, Webb observatory project scientist at NASA’s Goddard Space Flight Center.

Georgina Torbet
Georgina has been the space writer at Digital Trends space writer for six years, covering human space exploration, planetary…
Getting to Mars may require a pit stop in orbit, and NASA just tested the nozzle to make that happen
A gas pump nozzle for spacecraft sounds simple. It is not, and that's what makes this test worth paying attention to.
Architecture, Building, Factory

Getting a spacecraft to Mars or beyond requires an enormous amount of fuel, most of which has to be hauled from Earth, adding to the overall cost and weight of the spacecraft. NASA has been working on a different approach, one that could be more efficient and effective.

It wants to refuel a spacecraft in orbit before heading out for the mission. What’s even more interesting is that the space agency just finished testing a component that could make that possible: a cryocoupler.

Read more
Elon Musk’ Starlink could soon offer mobile services as a US carrier
Showcase of T-Mobile Starlink service on an iPhone.

Elon Musk’s Starlink has already changed how millions of people access the internet, especially in places where traditional broadband struggles to reach. Now, the satellite internet service could be preparing for an even bigger leap — becoming your mobile carrier.

According to a Financial Times report, SpaceX has told investors it’s considering launching a retail Starlink mobile service in the US. Instead of simply partnering with wireless carriers, the company could begin selling mobile plans directly to consumers, putting it in direct competition with Verizon, AT&T, and T-Mobile.

Read more
Lightsails have hit another speed bump on the road to interstellar travel
The coolest interstellar travel idea may get betrayed by the light pushing it
LightSail in Earth orbit

Laser-powered lightsails are one of the coolest answers to spaceflight. It might not be as sci-fi-sounding as a warp drive, but now, its practicality has also come under question. Using lightsails, a spacecraft could unfurl an ultra-thin reflective sail and let a powerful laser push it toward another star, without relying on fuel.

The tech was simple and elegant--except it's also more complicated than it sounds. A new preprint from researchers Chao Shen and Jiaze Li of the Harbin Institute of Technology suggests that relativistic lightsails may run into a hidden propulsion problem once they start moving extremely fast.

Read more