The Fine Structure Constant and Habitable Planets
arXiv:1604.03151 · doi:10.1088/1475-7516/2016/08/048
Abstract
We use the existence of habitable planets to impose anthropic requirements on the fine structure constant, . To this effect, we present two considerations that restrict its value to be very near the one observed. The first, that the end product of stellar fusion is iron and not one of its neighboring elements, restricts to be . The second, that radiogenic heat in the Earth's interior remains adequately productive for billions of years, restricts it to be . A connection with the grand unified theory window is discussed, effectively providing a route to probe ultra-high energy physics with upcoming advances in planetary science.
24 pages, 4 figures
References in corpus (13)
- The Transiting Exoplanet Survey Satellite
- The James Webb Space Telescope
- Most 1.6 Earth-Radius Planets are not Rocky
- Strong Dependence of the Inner Edge of the Habitable Zone on Planetary Rotation Rate
- Inevitability of Plate Tectonics on Super-Earths
- Exotic Earths: Forming Habitable Worlds with Giant Planet Migration
- Interaction of Supernova Ejecta with Nearby Protoplanetary Disks
- Evidence for the Multiverse in the Standard Model and Beyond
- On the Validity of the Geiger-Nuttall Alpha-Decay Law and its Microscopic Basis
- The Cosmic Coincidence as a Temporal Selection Effect Produced by the Age Distribution of Terrestrial Planets in the Universe
- Constraints on Alternate Universes: Stars and habitable planets with different fundamental constants
- Grand Unified Theories
- Binding the Diproton in Stars: Anthropic Limits on the Strength of Gravity
Cited by in corpus (6)
- The Degree of Fine-Tuning in our Universe -- and Others
- The BDX-MINI detector for Light Dark Matter search at JLab
- Multiverse Predictions for Habitability: Fraction of Life that Develops Intelligence
- Multiverse Predictions for Habitability: Fraction of Planets that Develop Life
- Anthropics of Aluminum-26 Decay and Biological Homochirality
- Multiverse Predictions for Habitability: Element Abundances