The universe is an amazing place of history of creation, life and death. Even the dead stars leave behind remains of the supernova blast or the corpse or the neutron star who x-ray radiation (pulsar) we can photograph some 100,000 years later and call it Cassiopeia A.
Thanks to the briliant scientists at Hubble telescope who continue to amaze us with pictures of the elegant universe.
What happened in the past, our current understanding defines our future. The reason why we learn the past, explore the present and charter a better future.
Belai Habte-Jesus,MD, MPH
www.GlobalBelaiJesus.com
Supernova remnant. This false-color image from three of NASA's Great Observatories provides one example of a star that died in a fiery supernova blast. Called Cassiopeia A, this supernova remnant is located 10,000 light-years away in the constellation Cassiopeia.
The orb. At the center of this orb, visible only as a tiny turquoise dot, is the leftover corpse of the now-dead star, called a neutron star. The multi-hued shell outside the neutron star is the rest of the original star's scattered remains.
Neutron STAR. NASA's Spitzer Space Telescope found a dusty disk circling around a similar neutron star called 4U 0142+61.
Pulsar. This particular neutron star (not pictured here) spins and pulses with X-ray radiation, so it is called a pulsar.
Its disk is made of material that was blown off the exploding star but never reached a high enough velocity to escape the star's gravity.
A photograph of 4U 0142+61 would only show both the pulsar and disk as one small dot, without any outer shell of expelled material.
A pulsar that exploded 100,000 years ago. This is because the pulsar exploded about 100,000 years ago, and its shell has since cooled to the point where it is no longer visible.
The death of the star that gave rise to Cassiopeia A was witnessed from Earth about 320 years ago, so its shell is still hot and glowing. Infrared data from the Spitzer Space Telescope are colored red; visible data from the Hubble Space Telescope are yellow; and X-ray data from the Chandra X-ray Observatory are green and blue.
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