PART IV · Third Room · Toward a Theory of Everything
String Theory — Every Particle Is a Single String
Playing a Different Note
Quantum mechanics and general relativity — two theories, each flawless in its own domain — spew out infinities and collide the moment they meet. String theory is the most ambitious attempt to reconcile the two.
§1Why We Need a New Theory
In places that are extremely small yet extremely heavy, such as the center of a black hole or the instant of the Big Bang, quantum mechanics and general relativity must be used together. But when you try to quantize gravity the way the other forces are quantized, every calculation pours out infinities that cannot be removed. One root cause lies in treating a particle as a point of zero size — if the distance can go to zero, the force (∝1/r²) can become infinite.
§2Replacing the Point with a String
String theory's proposal is bold yet simple. The smallest unit of everything is not a point but a vibrating one-dimensional string whose length is around the Planck length (~10⁻³⁵m). Because it has size, the infinity of "zero distance" smoothly disappears. And just as a single guitar string sounds different notes depending on how it vibrates, the same string becomes an electron, a photon, or a quark depending on how it trembles. The things we called "different particles" turn out to be different notes from a single instrument — the universe is a vast orchestra.
§3Gravity as a Bonus, and Extra Dimensions
The crowning gem of the theory lies in the closed string (loop). When you calculate the vibration spectrum of a closed string, a particle with zero mass and spin 2 necessarily appears — and these are exactly the conditions for the graviton, the carrier of gravity. Gravity wasn't forced in; the theory demands it. But there is a price — for the mathematics to hold together without contradiction, spacetime must be 10-dimensional. The 6 dimensions we cannot see are thought to be curled up extremely small, and that curled-up shape is called a Calabi–Yau manifold (you can see it in the experiment below).
§4Beautiful, but Not Yet Judged
String theory is mathematically extraordinarily elegant, and it has even been shown that five different string theories are unified into a single 11-dimensional M-theory. Yet it has a decisive weakness — strings are so small that with current technology direct verification is impossible, and with as many as 10⁵⁰⁰ possible shapes for the universe, it cannot predict why our universe is the one we live in. So string theory is at once "the most beautiful candidate" and "a hypothesis that has not yet received the verdict of experiment," standing — together with rival theories (such as loop quantum gravity) — at the frontier of the unsolved problem of quantum gravity.
Key points
- Motivation: removing the infinities that arise when quantum mechanics and general relativity are combined
- Hypothesis: the smallest unit of everything is not a point but a vibrating string (~10⁻³⁵m)
- Type of particle = the string's vibration mode; mass of the particle = the energy of the vibration
- A graviton inevitably emerges from the closed string — "a quantum theory that contains gravity"
- Requirement: 10 dimensions (the extra 6 curled up into a Calabi–Yau manifold), still unverified
- 1968
- Veneziano stumbles upon the mathematics of strings while studying the strong nuclear force
- 1974
- Scherk and Schwarz realize that "string theory is a theory of quantum gravity"
- 1984
- The First Superstring Revolution — Green and Schwarz prove mathematical consistency
- 1995
- The Second Revolution — Witten proposes M-theory, unifying the five string theories (11 dimensions)
- Today
- Direct verification remains incomplete — through AdS/CFT correspondence and more, it supplies mathematical tools to other fields