Is "the theory of everything'' merely the ultimate ensemble theory?
arXiv:gr-qc/9704009 · doi:10.1006/aphy.1998.5855
Abstract
We discuss some physical consequences of what might be called ``the ultimate ensemble theory'', where not only worlds corresponding to say different sets of initial data or different physical constants are considered equally real, but also worlds ruled by altogether different equations. The only postulate in this theory is that all structures that exist mathematically exist also physically, by which we mean that in those complex enough to contain self-aware substructures (SASs), these SASs will subjectively perceive themselves as existing in a physically ``real'' world. We find that it is far from clear that this simple theory, which has no free parameters whatsoever, is observationally ruled out. The predictions of the theory take the form of probability distributions for the outcome of experiments, which makes it testable. In addition, it may be possible to rule it out by comparing its a priori predictions for the observable attributes of nature (the particle masses, the dimensionality of spacetime, etc) with what is observed.
29 pages, revised to match version published in Annals of Physics. The New Scientist article and color figures are available at http://www.sns.ias.edu/~max/toe_frames.html or from [email protected]
References in corpus (1)
Cited by in corpus (30)
- The importance of quantum decoherence in brain processes
- The Mathematical Universe
- Dimensionless constants, cosmology and other dark matters
- Why the Universe is Just So
- What does inflation really predict?
- Life at the Interface of Particle Physics and String Theory
- Multiverses and physical cosmology
- Multiple universes, cosmic coincidences, and other dark matters
- The Degree of Fine-Tuning in our Universe -- and Others
- Anthropic Reasons for Non-Zero Flatness and Lambda
- Cosmological Constraints on a Dynamical Electron Mass
- Anthropic predictions for neutrino masses
- On Math, Matter and Mind
- Editorial note to "Large number coincidences and the anthropic principle in cosmology"
- Towards a Coherent Theory of Physics and Mathematics: The Theory-Experiment Connection
- Universe creation on a computer
- Why Occam's Razor
- New Gauge Field from Extension of Space Time Parallel Transport of Vector Spaces to the Underlying Number Systems
- Binding the Diproton in Stars: Anthropic Limits on the Strength of Gravity
- The Representation of Natural Numbers in Quantum Mechanics
- The Copernican Principle in Compact Spacetimes
- Is the Multiverse Hypothesis capable of explaining the Fine Tuning of Nature Laws and Constants? The Case of Cellular Automata
- On the Interpretation of Energy as the Rate of Quantum Computation
- Effects of Bound Diprotons and Enhanced Nuclear Reaction Rates on Stellar Evolution
- Congeniality Bounds on Quark Masses from Nucleosynthesis
- A Possible Approach to Inclusion of Space and Time in Frame Fields of Quantum Representations of Real and Complex Numbers
- The non-unique Universe
- Disentangling Boltzmann brains, the time-asymmetry of memory, and the second law
- The Preferred System of Reference Reloaded
- Use of Mathematical Logical Concepts in Quantum Mechanics: An Example