2014/06/20 by Carl Frederick, Frederick, Carl · 1 citation
Mathematics · Physics and Astronomy · #Advanced Mathematical Theories and Applications #Classical mechanics #FOS: Physical sciences #Mathematical analysis #Mathematics #Metric tensor #Physics #Quantum #Quantum Physics (quant-ph) #Quantum entanglement #Quantum mechanics #Statistical physics #Uncertainty principle #quant-ph
paper · pdf · doi:10.48550/arxiv.1406.5248
published in arXiv (Cornell University) (Cornell University)
arxiv created 2014/06/20 · openalex publication_date 2014/06/20 · arxiv updated 2014/06/23 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/28
With the decline of the Copenhagen interpretation of quantum mechanics and the recent experiments indicating that quantum mechanics does actually embody 'objective reality', one might ask if a 'mechanical', conceptual model for quantum mechanics could be found. We propose such a model. Vacuum energy fluctuations imply mass fluctuations and, through general relativity, curvature fluctuations. And those fluctuations are indicated by fluctuations of the metric tensor. The metric tensor fluctuations can 'explain' the uncertainty relations and non-commuting properties of conjugate variables. We argue that that the probability density is proportional to the square root of minus the determinant of the metric tensor (the differential volume element). We argue that the metric elements are not stochastic but are oscillating at a high enough frequency that measured values of same appear stochastic (i.e. crypto-stochastic). We suggest that the oscillations at the position of particles are described as torsional vibrations. A crypto-stochastic (or chaotic) oscillating metric yields, among other things, a model of super-position, photon polarization, and entanglement, and all within the confines of a 4-dimensional space-time.