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Space Is Trying To Kill You
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Why the universe exists when it should have canceled itself out

The Big Bang created equal parts matter and antimatter, which should have mutually annihilated into a totally empty void. You exist because of a subatomic accounting error.

By Smartasaurus· 3 min read Cosmic

Every single thing you can see

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The short version
  • The Big Bang created equal parts matter and antimatter, which should have mutually annihilated into a totally empty void. You exist because of a subatomic accounting error.
  • Even if you strip away all matter and antimatter, the concept of absolute nothing turns out to be a physical impossibility.
  • The universe is not an intentional masterpiece; it is a chaotic stain on an otherwise spotless void, and every breath you take relies on a subatomi…

By all rights of fundamental physics, the universe should be entirely empty. When energy transforms into matter, it always creates matter and antimatter in identical quantities, like twin siblings born at the exact same instant. Bring them back together, and they violently erase each other in a flash of radiation, leaving nothing behind. During the Big Bang, the universe was filled with equal amounts of both. Mathematically, every electron, proton, and neutron in existence had a mirror enemy designed to instantly destroy it. If the rules of reality had played out with complete symmetry, the cosmos would have canceled itself out in the first microsecond, leaving a calm, lifeless ocean of pure light.

Yet here you are, reading this on a clump of lingering matter. Physicists call this cosmic paradox baryogenesis, and it boils down to a terrifyingly narrow accounting error. For every billion particles of antimatter created in the primordial fire, the universe somehow produced one billion and one particles of regular matter. When the great annihilation swept through the young cosmos, almost everything vanished. All the galaxy clusters, stars, black holes, planets, and human beings that will ever exist are constructed from that lonely, single leftover particle out of every billion. You are not the rule of physics; you are the rounding error that survived.

To explain how this asymmetry happened, Soviet physicist Andrei Sakharov realized in 1967 that reality must break its own symmetry rules under three specific conditions. First, reactions in the early universe had to favor matter over antimatter. Second, physics had to violate what is known as Charge-Parity symmetry—meaning physical laws must behave slightly differently if you swap a particle with its antiparticle and flip space upside down. Third, this had to happen during a chaotic phase where the universe cooled down faster than subatomic particles could reach thermal equilibrium. Experiments in particle colliders have confirmed that nature does indeed break this symmetry, particularly in heavy subatomic particles called B mesons, proving that the laws of physics are subtly rigged in favor of stuff existing.

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