Quantum nature of gravity and spacetime: Fundamental insights from the Hoyle-Narlikar theory
Dawood Kothawala
Abstract
The Hoyle-Narlikar action-at-a-distance formulation for gravity remains one of the most mathematically rigorous attempts to incorporate Mach principle into physics. A lesser known, but no less significant, is the fact that it is also one of the first in which two point functions play a key role in determining spacetime structure, and hence, are more fundamental than the metric. We argue that these ingredients have direct relevance for modern attempts to understand fundamental, emergent, and informational aspects of quantum spacetime. The non-local description of quantum spacetime, with Planck scale 0 as a zero-point length, provides a mechanism through which the entire universe can inform local causal structure, `a la Mach, Hoyle, and Narlikar. In this chapter, we highlight certain key aspects of the HN theory and then discuss case studies from modern research that illustrate how the quantum spacetime might realize a version of the quantum gravitational Mach principle.
Create a lesson
Related papers
The Bomb, the Hubris, and the Spectre
Alberto Girlando
Holography as an Information Principle in Quantum Gravity
Sebastian De Haro, Enrico Cinti, Aude Corbeel
Dark Matters of Principle: Principles in the Dark Matter Paradigm
Patrick Duerr, James Read
Does the Actuality of Life Favor Many Actual Histories?
Jonathan Baxter
Minkowski's Geometric Explanation of Lorentz Contraction
Tilman Sauer
The comets discovered from New Zealand, and the astronomers who found them
John Drummond, Wayne Orchiston, Carolyn Brown et al.