purple haze aurora

Purple Haze Aurora

Green and purple aurora and white airglow arc above Earth’s limb and the scattered city lights of Central Asia in a nighttime photo taken from the International Space Station.

One of the inspirations for Jimi Hendrix’s iconic 1967 hit “Purple Haze” is said to be the sci-fi novel Night of Light, about a distant planet in a binary star system. Every seven years, the story goes, the stars bathe the planet in a bizarre purple radiance with the power to rearrange physical reality in profound and unexpected ways. The atmosphere’s purple glow, for instance, turned some people into trees and brought statues to life.

It’s perhaps fitting, then, for an astronaut on the International Space Station to invoke the iconic song after witnessing the aurora illuminate Earth’s atmosphere with ethereal greens, reds, and purples. Hendrix would have “rejoiced” at the “brilliant purple,” NASA astronaut Jessica Meir posted on September 8. It “makes me want to kiss the sky,” she added in a nod to the lyrics of the Hendrix song.

The photograph above is one of many that the astronauts took on September 7, 2026, as they orbited an atmosphere quivering with color. The station was at an altitude of 255 miles (411 kilometers) and above Kyrgyzstan when the photo was taken. Stacking several of the photos also yielded a long-exposure series in which the aurora’s green glow mingles with star trails, moonlight, passing satellites, and city lights in a dazzling jumble of illumination.

Aurora is the Latin word for “dawn” and also the name of the Roman goddess of the dawn. Its use in reference to the atmospheric phenomenon likely comes from Europeans living far from the Arctic Circle, who would have experienced the aurora as a faint red glow to the north, resembling the reddish glow in the east at dawn.

The colorful phenomenon typically starts when the Sun sends charged particles toward Earth through solar flares, coronal mass ejections (CMEs), or an active solar wind. These particles interact with the magnetosphere—the invisible, comet-shaped bubble of magnetic field lines surrounding the planet—compressing and changing the configuration of the magnetic field. In the process, some particles within the field are drawn into Earth’s upper atmosphere, where they excite nitrogen and oxygen atoms and molecules, causing them to release photons.

The aurora Meir photographed occurred amid a disturbance associated with a high-speed stream of solar wind from a coronal hole and the lingering effects of multiple coronal mass ejections, according to updates from NOAA’s Space Weather Prediction Center. These solar wind disturbances interacted with Earth’s magnetosphere, causing minor (G1) geomagnetic storms.

The colors of auroras are influenced by the type of gas involved and the altitude at which they occur in the atmosphere. Oxygen excited to different energy levels can produce green and red. Green occurs roughly between 60 and 120 miles (100 and 200 kilometers) altitude, and red occurs above 120 miles (200 kilometers). Excited nitrogen gas, from about 60 to 120 miles (100 to 200 kilometers), glows blue or pink depending on the type and energy of the particles it interacts with. Sometimes, the light emitted by gases can appear to mix, making the auroras seem purple, pink, or even white.

While auroras can occur any time of the year, astronauts are especially likely to enjoy the light shows in the spring and fall, around the equinoxes. That’s because the geometry of Earth’s magnetic field relative to the solar wind makes it especially favorable for transferring solar-wind energy into the magnetosphere, a phenomenon known as the Russell-McPherron effect.

This isn’t the only example of Jimi Hendrix’s music making an impression beyond Earth. A selection of Hendrix’s music touched down on the Moon in 2024 with the Odysseus lander. Another Hendrix song, “Voodoo Chile,” made the list of wake-up songs for STS-110, according to a report from NASA’s History Division.

Astronaut photograph ISS075-E-88592 was acquired on September 7, 2026, with a Nikon Z9 digital camera using a focal length of 15 millimeters. It is provided by the ISS Crew Earth Observations Facility and the Earth Science and Remote Sensing Unit at NASA Johnson Space Center. The image was taken by a member of the Expedition 75 crew. The image has been cropped and enhanced to improve contrast, and lens artifacts have been removed. The International Space Station Program supports the laboratory as part of the ISS National Lab to help astronauts take pictures of Earth that will be of the greatest value to scientists and the public, and to make those images freely available on the internet. Additional images taken by astronauts and cosmonauts can be viewed at the NASA/JSC Gateway to Astronaut Photography of Earth. Story by Adam Voiland.

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