On the Ricci flow and emergent quantum mechanics
arXiv:0902.0143 · doi:10.1088/1742-6596/174/1/012033
Abstract
The Ricci flow equation of a conformally flat Riemannian metric on a closed 2-dimensional configuration space is analysed. It turns out to be equivalent to the classical Hamilton-Jacobi equation for a point particle subject to a potential function that is proportional to the Ricci scalar curvature of configuration space. This allows one to obtain Schroedinger quantum mechanics from Perelman's action functional: the quantum-mechanical wavefunction is the exponential of times the conformal factor of the metric on configuration space. We explore links with the recently discussed emergent quantum mechanics.
To appear in the proceedings of DICE'08 (Castiglioncello, Italy, Sept. 2008), edited by H.-T. Elze
References in corpus (7)
- The Attractor and the Quantum States
- Is there a relativistic nonlinear generalization of quantum mechanics?
- Remarks on Weyl geometry and quantum mechanics
- Some remarks on Ricci flow and the quantum potential
- Relativistic Bohmian mechanics from scalar gravity
- Remarks on Fisher information
- More on the quantum potential