Showing posts with label Aurora Australis. Show all posts
Showing posts with label Aurora Australis. Show all posts

Tuesday, November 4, 2014

ESA Astronaut Alexander Gerst: Aurora Australis over New Zealand



This timelapse video was taken by ESA astronaut Alexander Gerst as he flew over New Zealand on the International Space Station at around 400 km altitude.

The nightime video shows an aurora (Aurora Australis) that occurs when Earth’s atmosphere interacts with solar radiation.

The International Space Station travels at 28 800 km/h meaning that it only takes 90 minutes to circle Earth completely. Each orbit the Station moves around 2200 km to the West in relation to 90 minutes before.

Astronauts often use normal consumer digital cameras to take pictures of Earth through Europe’s observatory module Cupola, in their brief off-duty /off-watch hours.

Setting the camera to take an image every few seconds and then playing the images back quickly create this timelapse effect.

Alexander worked as a geophysicist and volcanologist before he was chosen as an ESA astronaut in 2009.

His Blue Dot mission includes an extensive scientific programme of experiments in physical science, biology, and human physiology as well as radiation research and technology demonstrations.

All experiments chosen make use of the out-of-this-world laboratory to improve life on Earth or prepare for further human exploration of our Solar System.

Thursday, July 31, 2014

Auroras Over Earth: Amazing Northern Lights Photos from Space

The Aurora Australis or Southern Lights, photographed by one of the Expedition 37 crew members on the International Space Station as the orbital complex flew over Tasmania on Oct. 30, 2013.
The Expedition 32 crew onboard the International Space Station, flying an altitude of approximately 240 miles, recorded a series of images of Aurora Australis, also known as the Southern Lights, on July 15, 2012.
This picture, recorded by one of the Expedition 31 crew members aboard the International Space Station, features Aurora Australis with star streaks while the vehicle was over the South Pacific Ocean. Image taken on May 22, 2012.
Aurora Australis, seen at right on Earth's horizon, and daybreak (left) highlight this photograph taken by one of the Expedition 30 crew members on March 6, 2012 aboard the International Space Station.
The northern lights are a spectacular night sky phenomenon when viewed from Earth, but from space they transform into something truly amazing.

See amazing photos of the Earth's auroras as seen by astronauts on the International Space Station in these images released by NASA.

You can see the original NASA aurora gallery here.

Thursday, December 6, 2012

NORUSCA II camera: First-ever hyperspectral images of Earth's auroras

The aurora as seen as a color composite image from the NORUSCA II camera.

Three bands were combined to make the image. 

Each band was assigned a different color - red, green, and blue - to enhance the features of the aurora for analysis. 

Credit: Optics Express.

Hoping to expand our understanding of auroras and other fleeting atmospheric events, a team of space-weather researchers designed and built NORUSCA II, a new camera with unprecedented capabilities that can simultaneously image multiple spectral bands, in essence different wavelengths or colors, of light.

The camera was tested at the Kjell Henriksen Observatory (KHO) in Svalbard, Norway, where it produced the first ever hyperspectral images of auroras-commonly referred to as "the Northern (or Southern) Lights" and may already have revealed a previously unknown atmospheric phenomenon.

Details on the camera and the results from its first images were published in the Optical Society's (OSA) open-access journal Optics Express.

Auroras, nature's celestial fireworks, are created when charged particles from the Sun penetrate Earth's magnetic field. These shimmering displays in the night sky reveal important information about the Earth-Sun system and the way our planet responds to powerful solar storms.

Current-generation cameras, however, are simply light buckets-meaning they collect all the light together into one image-and lack the ability to separately capture and analyze multiple slivers of the visible spectrum.

That means if researchers want to study auroras by looking at specific bands or a small portion of the spectrum they would have to use a series of filters to block out the unwanted wavelengths.

The red arrow points to the unidentified low-intensity wave pattern, which the researchers suspect is an auroral-generated wave interaction with airglow. 

For contrast, the blue arrow points to the faint emission of the Milky Way. Credit: Optics Express.

The new NORUSCA II hyperspectral camera achieves the same result without any moving parts, using its advanced optics to switch among all of its 41 separate optical bands in a matter of microseconds, orders of magnitude faster than an ordinary camera.

This opens up new possibilities for discovery by combining specific bands of the same ethereal phenomenon into one image, revealing previously hidden details.

"A standard filter wheel camera that typically uses six interference filters will not be able to spin the wheel fast enough compared to the NORUSCA II camera," said Fred Sigernes of the University Centre in Svalbard (UNIS), Norway.

"This makes the new hyperspectral capability particularly useful for spectroscopy, because it can detect specific atmospheric constituents by their unique fingerprint, or wavelengths, in the light they emit."

These spectral signatures can then reveal subtle changes in atmospheric behaviour, such as the ionization of gases during auroras. This form of multispectral imaging also will enable scientists to better classify auroras from background sky emissions and study the way they cluster in the atmosphere.

Monday, June 25, 2012

NASA Shuttle Image: Lightning flashes, city lights, sunset, Aurora Australis

Lightning flashes, city lights, sunset, Aurora Australis, atmospheric glow and some stars, seen over Argentina on 4/23/2003

Image courtesy of the Image Science & Analysis Laboratory, NASA Johnson Space Center

Friday, March 30, 2012

Aurora Australis from Space Station - Video



ESA Astronaut, André Kuipers took this video of Aurora Australis from the European Cupola module in the Space Station.

The beautiful phenomenon is caused by bursts of particles from the Sun pouring down Earth’s magnetic field into the atmosphere.

Saturday, August 20, 2011

Space Weather Video of Auroras



More Aurora Images and Videos here

Space Weather is predicting Auroras


Sky watchers should be alert for auroras when the solar wind arrives on August 22-24.

NOAA forecasters estimate a 35% to 50% chance of geomagnetic activity.

Aurora alerts: text, voice


Tuesday, June 22, 2010

Aurora Australis from the ISS

This NASA image shows the Aurora Australis observed from the  International Space Station on May 29, 2010.This photo was taken during a  geomagnetic storm that was most likely caused by a coronal mass  ejection from the Sun on May 24, 2010. The ISS was located over the  Southern Indian Ocean at an altitude of 350 kilometres (220 miles), with  the astronaut observer most likely looking towards Antarctica (not  visible) and the South Pole. The aurora has a sinuous ribbon shape that  separates into discrete spots near the lower right corner of the image.  While the dominant colouration of the aurora is green, there are faint  suggestions of red left of image centre. Dense cloud cover is dimly  visible below the aurora. The curvature of the Earth's horizon  is  clearly visible, as is the faint blue line of the upper atmosphere  directly above it. Several stars appear as bright pinpoints against the  blackness of space at image top right

This NASA image shows the Aurora Australis observed from the International Space Station on May 29, 2010.This photo was taken during a geomagnetic storm that was most likely caused by a coronal mass ejection from the Sun on May 24, 2010.

The ISS was located over the Southern Indian Ocean at an altitude of 350 kilometres (220 miles), with the astronaut observer most likely looking towards Antarctica (not visible) and the South Pole.

The aurora has a sinuous ribbon shape that separates into discrete spots near the lower right corner of the image. While the dominant colouration of the aurora is green, there are faint suggestions of red left of image centre.

Dense cloud cover is dimly visible below the aurora. The curvature of the Earth's horizon is clearly visible, as is the faint blue line of the upper atmosphere directly above it. Several stars appear as bright pinpoints against the blackness of space at image top right

Picture: NASA / AFP

Sunday, June 20, 2010