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Space Telescope Imaging Spectrograph

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The Pillars of Creation in the Eagle Nebula, a beautiful region of star formation captured by the Hubble Space Telescope.

The Space Telescope Imaging Spectrograph (STIS) is a special tool used to study objects in space, installed on the Hubble Space Telescope. It was created by aerospace engineer Bruce Woodgate at the Goddard Space Flight Center. The STIS worked from 1997 until a problem in 2004, but it was fixed and started working again in 2009.

STIS under construction, 1996

The STIS was put on the Hubble Space Telescope in 1997 during a space mission called STS-82. It replaced two older instruments and was expected to work for five years. Even though it stopped working in 2004, it kept going for two extra years before astronauts fixed it during another mission, STS-125, in 2009.

One of the most exciting things the STIS helped discover was the first ever look at the atmosphere of a planet outside our solar system, called HD 209458b. Astronauts worked hard to repair the instrument, and it started exploring the universe once more.

Design

The Space Telescope Imaging Spectrograph (STIS) is a special tool that works like both a spectrograph and a camera. It mainly looks at ultraviolet light.

STIS uses three big detector arrays. The first one is a charge-coupled device that sees visible and near-infrared light. The other two detectors look at different kinds of ultraviolet light.

Timeline

STS-125 launches, a Space Shuttle Atlantis mission that repaired STIS and returned it to service
  • February 14, 1997 โ€“ STIS was installed (STS-82).
  • In 2001, it started using new parts after some old parts stopped working.
  • On August 3, 2004, STIS stopped working because of a problem with its power.
  • In 2009, STIS was fixed up again (STS-125).
  • As of 2022, STIS is still working using its backup parts and all its cameras.

Selected discoveries and observations

The Space Telescope Imaging Spectrograph helped scientists learn many new things between 1997 and 2017. It studied 20 galaxies to look for black holes, examined the space between galaxies, and watched stars and star systems.

Some of its important work included studying the air around a planet outside our solar system, spotting a dusty disk around the star Beta Pictoris, watching huge stars in the Tarantula Nebula, and seeing the remains of the star explosion Supernova 1987A. It also looked at flows of material from very active galaxies.

Images

A stunning image of the planet Saturn showing its beautiful ultraviolet aurorae, taken by the Hubble Space Telescope from space.
This image shows the orbit of the planet Fomalhaut b around its star, as observed by the Hubble Space Telescope. The planet follows a long, stretched path and may one day pass through a ring of space debris.
A colorful aurora glowing around Jupiter's north pole, captured by the Hubble Space Telescope. The bright blue lights are caused by high-energy electrons interacting with Jupiter's atmosphere.
The Hubble Space Telescope as seen from the Space Shuttle Atlantis during a mission to service and repair the telescope.

Related articles

This article is a child-friendly adaptation of the Wikipedia article on Space Telescope Imaging Spectrograph, available under CC BY-SA 4.0.

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