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Comet-Like Knots Around a Dying Star in the Helix Nebula

Comet-Like Knots Around a Dying Star in the Helix Nebula

These gigantic, tadpole-shaped objects are probably the result of a dying star's last gasps. Dubbed "cometary knots" because their glowing heads and gossamer tails resemble comets, the gaseous objects probably were formed during a star's final stages of life.

Hubble astronomer C. Robert O'Dell and graduate student Kerry P. Handron of Rice University in Houston, Texas discovered thousands of these knots with the Hubble Space Telescope while exploring the Helix nebula, the closest planetary nebula to Earth at 450 light-years away in the constellation Aquarius. Although ground-based telescopes have revealed such objects, astronomers have never seen so many of them. The most visible knots all lie along the inner edge of the doomed star's ring, trillions of miles away from the star's nucleus. Although these gaseous knots appear small, they're actually huge. Each gaseous head is at least twice the size of our solar system; each tail stretches for 100 billion miles, about 1,000 times the distance between the Earth and the Sun. Astronomers theorize that the doomed star spews hot, lower-density gas from its surface, which collides with cooler, higher-density gas that had been ejected 10,000 years before. The crash fragments the smooth cloud surrounding the star into smaller, denser finger-like droplets, like dripping paint.

This image was taken in August, 1994 with Hubble's Wide Field Planetary Camera 2. The red light depicts nitrogen emission ([NII] 6584A); green, hydrogen (H-alpha, 6563A); and blue, oxygen (5007A).

About the Object

  • R.A. Position
    R.A. PositionRight ascension – analogous to longitude – is one component of an object's position.
    22h 29m 48.19s
  • Dec. Position
    Dec. PositionDeclination – analogous to latitude – is one component of an object's position.
    -20° 49' 26.0"
  • Constellation
    ConstellationOne of 88 recognized regions of the celestial sphere in which the object appears.
    Aquarius
  • Distance
    DistanceThe physical distance from Earth to the astronomical object. Distances within our solar system are usually measured in Astronomical Units (AU). Distances between stars are usually measured in light-years. Interstellar distances can also be measured in parsecs.
    450 Light Years

About the Data

  • Instrument
    InstrumentThe science instrument used to produce the data.
    HST>WFPC2
  • Exposure Dates
    Exposure DatesThe date(s) that the telescope made its observations and the total exposure time.
    August, 1994
  • Filters
    FiltersThe camera filters that were used in the science observations.
    500 nm [Oi], 656 nm [H-alpha], and 658 nm [Nii]
  • Object Name
    Object NameA name or catalog number that astronomers use to identify an astronomical object.
    Helix Nebula, NGC 7293
  • Object Description
    Object DescriptionThe type of astronomical object.
    Planetary Nebula
  • Release Date
    April 15, 1996
  • Science Release
    Hubble Finds Thousands of Gaseous Fragments Surrounding a Dying Star
  • Credit
    C. Robert O'Dell and Kerry P. Handron (Rice University), NASA

Downloads

  • 1833 × 2793
    jpg (657.35 KB)
  • 502 × 656
    jpg (57.9 KB)
  • 502 × 656
    tif (866.38 KB)
  • 1841 × 2789
    jpg (601.8 KB)
  • 200 × 200
    jpg (8.39 KB)
  • 306 × 400
    jpg (18.08 KB)
  • 600 × 840
    jpg (81.59 KB)
Comet-Like Knots Around a Dying Star in the Helix Nebula
Color Info
Color InfoA brief description of the methods used to convert telescope data into the color image being presented.

Blue: Oxygen (5007A) Green: Hydrogen (H-alpha, 6563A) Red: Nitrogen ([NII] 6584A)

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Details

Last Updated
Mar 28, 2025
Contact
Media

Claire Andreoli
NASA’s Goddard Space Flight Center
Greenbelt, Maryland
claire.andreoli@nasa.gov