Gravity vs. Pressure: The battle that formed the universe - Fabio Pacucci

195,040 views ・ 2023-06-29

TED-Ed


Please double-click on the English subtitles below to play the video.

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Welcome one and all!
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It’s time to grab your seat for the biggest battle
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in the soon-to-be-formed universe.
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That’s right— the Big Bang is about to go down!
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In one corner is the force that brings all matter together.
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It acts on any particle with mass, and its range is infinite—
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give it up for gravity!
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In the other corner, our contender can push matter away
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with spectacular strength.
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When the going gets tough, this fighter just gets tougher.
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That’s right, it’s pressure!
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Over the next several hundred thousand years,
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these two contenders will be wrestling for the fate of the universe.
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That’s right folks, the ripple effects of this historic match
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will shape the structure of the universe as we know it today.
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But what are these powers fighting over?
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We’ll find out when the Big Bang hits right... now!
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Let’s zoom in for the play-by-play.
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This epic event has brought three components into our infant universe.
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Dark matter, which only interacts with gravity.
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Baryonic matter, which makes up all matter you’ve ever seen,
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is affected by both gravity and pressure.
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And radiation composed of innumerable particles of light,
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also known as photons.
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In the moments just after the Big Bang,
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all three components are in equilibrium,
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meaning no one location is denser than another.
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But as the universe starts expanding, differences in density start to emerge.
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Gravity immediately gets to work pulling matter together.
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Dark matter begins to collect at the center
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of these increasingly dense regions,
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forming the foundations of future galaxies.
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Meanwhile, pressure begins gathering its strength.
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In this hot, high-energy environment,
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protons and electrons can’t come together to form atoms,
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so these loose particles zip around, freely interacting with ambient photons.
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The result is almost a fluid of baryonic matter and radiation.
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But the closer these baryonic particles get, the hotter the fluid becomes,
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pushing photons to ping around with incredible force.
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This is the power of pressure, specifically radiation pressure,
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battling to push things apart.
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With each of gravity’s vicious tugs squeezing photons and matter together,
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pressure exerts a forceful shove back.
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And as the two giants struggle, they heave this fluid back and forth—
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creating massive waves called baryonic acoustic oscillations.
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Moving at almost two thirds the speed of light
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these BAOs ripple across space,
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impacting the universe on the biggest scale imaginable.
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These rolling waves determine the distribution of matter throughout space,
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meaning that today— almost 14 billion years after this fight began—
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we're more likely to find galaxies at their peaks
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and empty space in their troughs.
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And that’s not all.
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We can still see these ripples in the background radiation of the universe,
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a permanent reminder of this epic brawl.
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But after being locked in a stalemate for roughly 370,000 years,
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the tide of our battle finally begins to turn.
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After all this time, the heat from the Big Bang has dissipated significantly,
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cooling the universe down to a temperature
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at which loose electrons start to pair up with protons.
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Known as the “era of recombination,”
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this stops electrons from recklessly pinging around.
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This allows light to stream freely for the first time,
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illuminating the universe.
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These photons now only exert a tiny force on the neutral atoms they interact with,
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gradually reducing the power of pressure.
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And with that, it’s time to crown our champion!
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The undefeated force, the most pervasive power in the universe:
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it’s gravity!
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And yet, this rivalry isn’t over.
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A similar battle continues between these two sworn enemies today,
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within every single star.
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As gravity pulls a star’s gas inward,
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pressure increases and pushes the matter back outward.
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This push and pull keeps the Sun, and all other stars,
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stable for billions of years.
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In fact, this clash of the titans is the same reason
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Earth’s atmosphere doesn’t collapse to the ground.
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So while their greatest fight might have ended,
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these two warriors are still to be locked in combat—
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even as a new challenger approaches.
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