The observable universe—the portion from which light has had time to reach us since the Big Bang—is a sphere centered on Earth with a current radius of about 46.5 billion light-years, for a diameter of roughly 93 billion light-years. This figure accounts for the universe's expansion: light from the earliest moments (like the Cosmic Microwave Background, or CMB) left its source ~13.8 billion years ago, but the space it traveled through has stretched dramatically since then. The light-travel distance alone would suggest only ~13.8 billion light-years, but expansion inflates the current distance to ~46.5 billion light-years in every direction.
- The full universe could be infinite (especially if space is flat on large scales, as CMB data strongly indicate).
- Or it could be finite but without boundaries (e.g., like the surface of a higher-dimensional sphere).
- Inflation theory implies the entire universe is at least hundreds of times larger than the observable part, possibly by enormous factors like 10^23 or more.