Experimental Way to detect 3-Dimensions of Time or Higher Dimesions of Spacetime: A way to test String Theory

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1. Verfasser: Singh Khalsa, Sardar Dilbag
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Veröffentlicht: Zenodo 2026
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author Singh Khalsa, Sardar Dilbag
author_facet Singh Khalsa, Sardar Dilbag
contents <p>We propose a physically realizable clock-based experiment that tests whether</p> <p>time possesses a multidimensional geometric structure. Three identical atomic</p> <p>clocks are mounted at the ends of mutually orthogonal rigid rods attached to</p> <p>a common hub and subjected to controlled inertial motion. Standard special</p> <p>relativity predicts that all clocks remain mutually synchronized, independent</p> <p>of orientation. We show that if time instead has three independent compo-</p> <p>nents associated with spatial directions, motion with nonzero velocity projections</p> <p>along multiple axes produces direction-dependent proper-time accumulation.</p> <p>This leads to measurable desynchronization between clocks oriented along dif-</p> <p>ferent spatial directions. The experiment constitutes a direct operational test of</p> <p>temporal isotropy and distinguishes scalar time from vectorial time. Observation</p> <p>of anisotropic clock rates would imply a six-dimensional spacetime structure with</p> <p>three spatial and three temporal dimensions, requiring a revision of Minkowski</p> <p>spacetime while preserving relativistic covariance in an extended geometry.</p>
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id zenodo_https___doi_org_10_5281_zenodo_18384819
institution Zenodo
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publishDate 2026
publisher Zenodo
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spellingShingle Experimental Way to detect 3-Dimensions of Time or Higher Dimesions of Spacetime: A way to test String Theory
Singh Khalsa, Sardar Dilbag
<p>We propose a physically realizable clock-based experiment that tests whether</p> <p>time possesses a multidimensional geometric structure. Three identical atomic</p> <p>clocks are mounted at the ends of mutually orthogonal rigid rods attached to</p> <p>a common hub and subjected to controlled inertial motion. Standard special</p> <p>relativity predicts that all clocks remain mutually synchronized, independent</p> <p>of orientation. We show that if time instead has three independent compo-</p> <p>nents associated with spatial directions, motion with nonzero velocity projections</p> <p>along multiple axes produces direction-dependent proper-time accumulation.</p> <p>This leads to measurable desynchronization between clocks oriented along dif-</p> <p>ferent spatial directions. The experiment constitutes a direct operational test of</p> <p>temporal isotropy and distinguishes scalar time from vectorial time. Observation</p> <p>of anisotropic clock rates would imply a six-dimensional spacetime structure with</p> <p>three spatial and three temporal dimensions, requiring a revision of Minkowski</p> <p>spacetime while preserving relativistic covariance in an extended geometry.</p>
title Experimental Way to detect 3-Dimensions of Time or Higher Dimesions of Spacetime: A way to test String Theory
url https://doi.org/10.5281/zenodo.18384819