The Living Star
Debi Prasad Choudhary
LAX, Los Angeles, 3/23/2014
A star is born in a pile of dirt; it lives a life witnessing
events around and in the end die, at times violently to rest in peace. That is
the real life story of a star, not what I heard in my childhood that they
attained Godhood, who were noble on earth and they are eternal.
The birthplaces of the stars are seen through telescopes as fuzzy
looking cold nebulas objects that contain 1000 to 100,000 atoms per cubic cm at
temperature of about 100 degree K, in the sky. Some of these objects look dark
as they contain dense dust and gas, some other look brighter due to the
reflection of starlight and in some other the gas is excited like in neon lamps
to produce their own light. In between the gas clouds and stars, there are very
small amount of material, about one atom per cubic meter at temperatures of 1000
degree K. Since the light travels a long distance from the stars to reach earth
they look relatively redder as blue light is absorbed, similar to the phenomena
of red appearance of evening and morning sun. This void is also filled with
hydrogen atom that has one positive proton at center circled by a negative
electron. The hydrogen atom has less energy when these protons and electrons
rotate in opposite direction and more energy when the direction is same. Many
atoms emit a light particle of very low energy and flip the direction of
rotation of electron. Since hydrogen is filled in the galaxy, this light is
used to map the rotation of our galaxy.
When the gas clouds are disturbed due to passing by shock
waves and fragment into vast chunks of clouds. Few years back, I experienced a
shock wave as space shuttle was landing in Edward Air Force Base. When shuttle
enters the earth, the air in front gets compressed resulting sound waves whose
velocity depends on the local density and temperature. The shock waves are
produced when the shuttle speed exceeds the sound speed, in which case sonic
booms in the form of sound are produced and we experience earthquake-type
situation to our home. Among many causes, in case of stellar situation such
waves are produced when a near by star die.
As a vast chunk of the gas cloud, produced by fragmentation
of bigger clouds of dust and gas, collapse to become a star they start rotating
faster and faster. You will notice a
similar effect of fast rotation of a skater when the arms are kept near the
chest compared to the stretched arms. The rapidly rotating collapsing cloud
becomes a flat pancake like object and ejects gas jets above and below at the
center. These jets are produced as puffs of material at the center of rotating
disk are ejected at high speed producing shock waves similar to supersonic jets
on its path.
As the chunks of cloud collapse, the material gets squeezed
and becomes hotter. On midway to become star, they start glowing in infrared
light at about 1000 degree K. Finally, the nuclear fusion sets in to produce
energy at the center that blow away dust around the star. From dirt to star,
the time it takes depend on how heavy it is. The stars that are about 8 to 10
times heavier than sun take about 0.16 million years, where as a sun like star
takes about 30 million years to rise from dirt. It takes 100 million years to
become a star with half solar mass. Still lower mass stars take longer time to
become a real star. Stars are produced in bursts, not alone. There is a fuzzy
object in Orion constellation, called Orion Nebula, where such process is going
on. With a binocular, you can see at least four young stars at this place.
About 100 years ago, no body knew how the stars glow for
such a long time. What is the source of energy? At that time, people knew that
energy is produced by burning wood or oil or of similar processes. If that were
the mechanism with which stars produce energy, they will become dead in few
thousand to few million years. In around 1920, Arthur Eddington, a British
Astronomer, thought that there must be some other forms of producing energy
than what is known at that time and argued that nuclear source.
Twenty years later, Hans Bethe, a German born, American physicist proved that indeed nuclear fusion fuel the stars that keep them shining
for billions of years. The same principle was used to make hydrogen bomb.
Nuclear fusion combines smaller elements to produce higher ones and energy.
Energy can be produced by combining lighter element such as hydrogen, helium,
carbon, neon, oxygen and silicon for fusion. Heavier than iron cannot be
combined to produce energy. All stars start by combining hydrogen to produce
helium and stop the reaction depending on their mass. A sun like star or 10
times lighter one, combine hydrogen at a temperature of about 4 x 106
degree K, where as tars that are eight times heavier combine Silicon to produce
Iron at a temperature of 2.7 x 109 degree K. Star like sun remain in
the main sequence for 10 billion years, which is twice it’s present age. Where
as a star that is 15 times heavier lives the main sequence in 10 million years.
The like of heavier stars is short.
The energy produced at the center flows outward producing pressure due to radiation at each layer. This pressure is balanced by the pressure due to the material or the gravitational force. When these two reassure are balanced at each layer, a star becomes stable. If the radiation pressure exceed gravitational pressure the star would explode, if gravitational pressure exceeds it would collapse. In case of atom bomb or hydrogen bomb, for example, the radiation force is so much that it explodes.
Advanced physics students use their knowledge to understand
various stages of their evolution with the aid of modern computers. Since my
childhood, I have been hearing how some people can know that they are going
die, even though I never encountered such a person. But for stars there are
several signs with dramatic events before their death. Stars pulsate; they
change their brightness severely due to change in the energy production at the
center and changing size before they finally die. They become very big. In
Orion constellation, there is a bright red star, called Betelgeuse, which is in
such a stage. There are pulsating stars called Cepheids and Lyrae that are at
different stages of evolution marching towards death. North star pulsates,
which can be observed to change its brightness slightly. As the stars are
produced in clusters in different sizes at the same time, they are observed in
different stages of evolution at the present time.
The sun is 4.5 billion years old, and shall remain like this
for 5 more billion years before swelling to engulf the earth and other planets.
Ultimately it will die to rest in peace. What will happen to us? I cannot
imagine. We made a lot of progress in past 100 years, human is becoming better.
If we manage to survive when sun stars dying, we shall manage to survive, I
think optimistically.