The first 200 lines.
February 18, 2021.
Perseverance, NASA's newest rover,
one of the most sophisticated planetary probes ever built,
is approaching Mars
on an epic quest to hunt for life beyond Earth.
We are under a minute
from cruise stage separation.
130 million miles away,
a team of researchers anxiously waits...
Heading alignment.
As Perseverance attempts to land
where no rover has dared land before...
Inside a crater
that might be filled with ancient Martian life,
but is definitely filled with cliffs
and sand traps
where a rover can crash
or get stuck for good.
We're heading toward the ground
at race car speeds.
So there's no way we're going to joystick this down.
For the first time in the history of Mars exploration,
a rover is equipped with
the intelligence to try to steer itself out of danger.
There's a very specific timeline of events
that have to happen at the correct time for
the entire process to succeed.
Perseverance signals its progress...
Sky crane maneuver has started.
As the team monitors every step.
If the rover manages to land in one piece,
for about two years, it will drill into Martian rock
that could hold evidence of ancient life,
then collect samples and store them.
For the first time, we are going to collect
rock samples and bring them back to Earth.
In the future, another rover will retrieve the samples
Perseverance collects.
And through a series of daring missions...
that sound more science fiction than science fact...
the samples will be brought to Earth,
where researchers can examine them
in far greater detail.
We have this amazing technology
that can really can get those samples,
bring them back to Earth,
and do all the really cool analysis
that we want to do here on Earth.
This is a very, very large undertaking
involving thousands and thousands of people
from all over the world.
Thousands of researchers
with one shared goal.
"Looking for Life on Mars," right now, on "NOVA."
Did life ever exist on Mars?
And if it did, what would that mean for us?
How special is life on Earth?
Why do we not see it on Mars today?
Did it ever evolve on Mars?
What does it take to get life
to evolve on a planet?
That question about life
is the one that really perplexes and, I think, really drives us.
Something about our desire to not be alone
keeps pushing us forward in the search for life.
I like to call it "CSI: Mars," right?
You know, it's, it's literally this investigation
where you're finding all these little clues
to put together your story.
The tale of our celestial neighbor, Mars.
The red planet.
It captures the imagination.
Thousands of images paint a picture
of a barren, alien world.
At the same time, there's something about Mars
that's strangely familiar.
I was born on the Navajo Nation.
It's a high desert area
that actually has rolling desert hills,
canyons, and rock formations, and mountains,
and all of that looks like the Martian landscape.
When I look at the pictures of Mars,
I see the Mojave Desert, right?
Without the cactus.
But I can't tell the difference if this image
is from the Mojave Desert or if this is from Mars.
To me, it makes me want to know more.
It makes me want to know, you know, what happened to Mars,
or was there life there?
Can the Perseverance rover finally answer
this question?
We've been searching for the remnants of life
on the red planet for decades,
from the Mariner orbiters
to the successful landings of Viking 1 and 2...
...through the twin rovers Spirit and Opportunity
that crisscrossed the planet.
We've been building our knowledge
of the Martian environment
through so many decades and so many achievements
from so many engineers before us.
But it was the discoveries
of the most cunning robotic detective
to ever explore Mars, a rover named Curiosity,
that set the stage for the Perseverance mission.
September 14, 2012,
40 days after Curiosity landed on Mars,
it stumbled upon the unexpected.
I remember the moment those images came down.
We were all at the Jet Propulsion Laboratory
at the time, and we were all huddled
around a giant computer screen,
and, and I was just gazing at this in astonishment,
because it's not what we had expected.
We came across a whole bunch
of cobbles,
and when we saw that, everybody's jaw just dropped.
"Oh, my gosh, look at this, this is perfect."
It is the classic example
of a river deposit.
Each one of those rocks, they had to get bounced around
in some type of environment that was going to turn them
from something that was chunky and sharp and angular
to something that was rounded.
Rivers do that.
Rivers on Earth do that very well.
And so when we saw this, it was our first evidence of a river.
Evidence that water once flowed
on the surface of the red planet.
On Earth, all life needs water to thrive...
...from the giant blue whale
to tiny microbes.
The scientists on the team have discovered
all these telltale signatures in the rocks
that there were rivers and ancient lakes that existed
for hundreds of thousands, if not millions of years.
You can think of Mars
as... back in time, of course...
as being Earth's slightly smaller, slightly colder sister.
Between 3.9 and 3.5 billion years ago,
we think that Mars was a warmer and wetter place.
And what's interesting about
that is that's the same sort of time interval
that life got going on Earth.
We have two planets with similar environments
at similar times.
One of them, on Earth, is inhabited.
Why wouldn't we expect that the one on Mars would be inhabited?
Curiosity found evidence of a once-wet world.
But here on Earth, for life to thrive,
it needs more than water.
It needs nutrients.
We tend to simplify
that search for what type of nutrients
as what we call CHNOPS.
When people say CHNOPS, what they're saying is carbon...
Hydrogen... Nitrogen...
Oxygen... Phosphorus...
Sulfur.
And we spell all those,
the first letter of all those out,
it's called CHNOPS.
These six elements make up
roughly 99% of the mass of the human body.
In fact, they make up about 99% of the mass
of all living things.
If life, as we know it, ever existed on Mars,
finding CHNOPS was key.
Could Curiosity, a laboratory on wheels, find CHNOPS?
The rover scooped up samples of Martian soil
to decode its chemical composition.
What we found was a diverse chemistry
that included carbon, hydrogen,
some nitrogen, oxygen, and sulfur,
and eventually we found some phosphorus.
There's plenty of chemical energy available for life,
if it had ever lived there.
That's really been the big discovery
of the Curiosity rover mission.
Curiosity found the ingredients necessary for life
to emerge, but not life itself.
Curiosity has not, in fact, detected evidence
for life, because it does not have the instruments
designed for that purpose.
Perseverance is designed to take the next step
in Mars exploration,
as it ventures into unexplored territory
to search for samples of Martian rock
in Jezero Crater.
If you want to set yourself up for success
for finding ancient life, that is the place to go.
This orbital image reveals
what makes Jezero Crater so intriguing.
The key thing that led us to Jezero
was this beautiful delta, beautifully visible from orbit.
We think that delta must be somewhere around
three billion years old or older.
This delta sits at the end of a beautifully expressed
sinuous river channel that came in from the northwest,
flowing into the crater rim, and filling up
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