The first 200 lines.
Male narrator: In the beginning, there was darkness,
and then, bang,
giving birth to an endless expanding existence
of time, space, and matter.
Every day, new discoveries are unlocking the mysterious,
the mind-blowing, the deadly secrets
of a place we call The Universe.
In the universe, it's important to know your nearest neighbors.
But how much do we really know about our corner
of the Milky Way?
In just the last few years,
scientists have uncovered incredible secrets
lurking in our own backyard:
New moons, new planets, and new mysteries.
- It's like there was a house in your neighborhood
that you never knew was there.
Narrator: Meet new neighbors
who are just passing through...
- There are planets that are wandering the galaxy aimlessly
without a place to call home.
Narrator: And old friends
whose days are numbered.
- It's conceivable that Betelgeuse
will go supernova tonight.
Narrator: Join us for a tour of the neighborhood
we're only now getting to know.
This is "Our Place in the Milky Way."
The.Universe.S07E03.DVDRip.XviD-FFNDVD English SRT Subtitles - UF (v1.00)
This isn't your neighborhood,
neither is this
or this
or any of these.
And it isn't even this.
Looked at from a wider perspective,
your neighborhood is a big cloud of gas.
Astronomers say the solar system is moving through
the local interstellar cloud,
also called "the local fluff"
because of its low density and irregular shape.
- The gases are mainly hydrogen and some helium.
There are trace amounts of heavier atoms
like carbon and oxygen and nitrogen
that are just floating around the interstellar medium.
We know that the heavier atoms in the interstellar medium
are left over from previous explosions of stars
as supernovae.
Narrator: The local fluff is 30 light-years long,
about 180 trillion miles.
It's inside a larger chimney-shaped gas cloud
called the local bubble,
also the remnant of an ancient supernova.
The bubble is 300 light-years long
and lies in the inner edge
of one of the spiral arms of the Milky Way.
And that's our neighborhood.
At least, we think it is.
- Our exact position in the Milky Way galaxy
relative to the arms actually isn't known.
The structure of the galaxy is not known in any real detail.
Some people think there are two major arms.
Some people think there are four major arms.
It's hard for us to determine
the exact structure of our Milky Way,
where all the arms are and so on,
because it's kind of like a mouse being inside a maze.
You don't get the big picture.
Narrator: In almost any Earth neighborhood,
you can determine your location very precisely.
Turn left in 30 feet.
Narrator: But when you're dealing with something
as big as the Milky Way,
GPS isn't an option.
- The galaxy is, you know, 100,000 light-years across.
Narrator: Even exploring our local neighborhood
involves a lot of uncertainty.
But if we did have a galactic positioning system,
it would probably locate us about midway between
the top and bottom of the Milky Way
and about midway between the galaxy's outer edge
and inner core.
- Our solar system is about 26,000 light-years away
from the center of our galaxy.
Narrator: According to one hypothesis,
we have a very exclusive location.
- There is one idea that only stars in a certain range
of distances from the center of our galaxy
are in the so-called galactic habitable zone,
that is, able to have life on planets
surrounding those stars.
It is just the right place
with a star of the right temperature
and a planet at the right distance
for there to be a lot of liquid water on the surface,
where the chemistry of life began and evolved into us.
Narrator: The overall range of the galactic habitable zone
extends from about 13,000 to 35,000 light-years
from the center of the Milky Way.
The main part, where we are,
ranges from 20,000 to 29,000 light-years from the core.
Inside the zone,
old neighborhoods have been destroyed
to make a place we can call home.
- Depending upon how you look at things,
our local neighborhood, our local solar system,
is actually a relatively safe place
compared to what seems to be going on
if you look at the universe in the large.
In the early history of our solar system,
it was a much more violent place.
And the material that formed the Sun and the planets
was still sorting itself out.
There were all sorts of collisions
and violent things happening
that gave rise to this nice, calm-
or relatively calm place that we have today.
- We think that the earliest stars formed
out of hydrogen and helium alone,
but that, over time, the stars work as these processors
that create the heavier elements.
This is important because when those stars
eventually die and explode,
these supernovae, or stellar death explosions,
seed the galaxy and the material around it
with heavier elements.
- So for example, the carbon in our cells,
the oxygen that we breathe,
the calcium in our bones,
the iron in our red blood cells,
all those are heavy elements.
We know that the Sun
is at least a second- or a third-generation star
because there are planets around it.
There are things made of iron and carbon
and other heavier elements.
Narrator: But the processes that led to life on Earth
don't seem to exist outside the zone.
Oloser to the edge of the galaxy,
fewer massive stars have exploded,
producing fewer heavy elements.
Further out in the galaxy,
you don't have as many atoms like carbon, nitrogen, oxygen-
the atoms that are so important for the chemistry of life.
So the habitable zone of the galaxy
cuts off at a distance where you just won't have
the heavier atoms to make life.
Narrator: If the outer galaxy is a bad neighborhood,
the inner area is even worse.
Gravity from massive gas giant planets
could tear us apart.
And there are other dangers the closer you get
to the galactic core.
- Back in the times of Oopernicus,
we thought that we were the center of our universe,
and even as we started to learn more about the heavens,
eventually, we still thought that we were the center
of the galaxy.
Now that we know even more, though,
it actually turns out that we're lucky
we're not in the center of the galaxy.
Narrator: At the center of the Milky Way,
sucking matter and even light into it,
is Sagittarius A-Star,
a black hole nearly 14 million miles across
with a mass 3.7 million times that of our Sun.
- If the galactic center has a black hole in it,
it gives off a lot of radiation-
enough to fry life as we know it-
so you can't be too close to that.
Then there are other regions in the galaxy
that are also probably not so great for life
because there's just so much radiation
from nearby really hot O-type stars.
Narrator: O-type stars are giants.
They're hotter than the Sun,
10 to 50 times as massive,
and throw out titanic amounts of ultraviolet radiation.
With these stars, you don't worry about sunburn
but extinction.
- It's probably not easy to survive in an environment
where you're in a tight cluster with a lot of O-type stars.
Narrator: O-type giants can destroy planets
before they form.
- The radiation from these stars is so strong
that it actually sweeps the material away
from these newly forming, would-be planetary systems
and rips it out of the orbit of their stars.
Narrator: If you want proof, look at the Rosette nebula.
It's 5,200 light-years away, far outside the local bubble,
but it shows what O-type giants could do to our neighborhood.
A 2008 study by the University of Arizona
of 1,000 stars in the nebula
found star after star had been made barren
by being too close to a blue giant.
So what's a safe distance from the radiation
of an O-type giant?
Well, if you ask me,
you can never be too far away from a giant.
If you're life like us here on Earth-
we're used to our fairly tame Sun-
you want to be probably at least tens of light-years away,
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