Predicting Sidereal-Modulated Gravity Anomalies and Directional Dependence

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Main Author: ACOSTA PADILLA, ALFREDO LUIS
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Published: Zenodo 2026
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author ACOSTA PADILLA, ALFREDO LUIS
author_facet ACOSTA PADILLA, ALFREDO LUIS
contents <p>This paper presents the theory of tides within the Structured Vacuum Theory (TVS) framework, where the vacuum is a discrete V23 lattice with dodecahedral symmetry. Unlike conventional theories (Newtonian or General Relativity), which describe tides as differential forces or spacetime curvature, TVS explains tides as elastic tension in the structured vacuum.</p> <p>The theory makes several novel, falsifiable predictions:</p> <p>1. SIDEREAL-MODULATED ANISOTROPY: A directional dependence in gravitational acceleration with relative amplitude Δg/g ≈ 1.2×10⁻¹², aligned with the CMB dipole direction (RA = 168.4°, Dec = -6.6°).</p> <p>2. PRECISE TEMPORAL SIGNATURE: For the Strasbourg J9 Observatory (48.6°N, 7.75°E), a 3.3 nGal anomaly peaking when Local Sidereal Time = 11h13m (approximately 01:58 CET and 13:58 CET daily).</p> <p>3. MATERIAL DEPENDENCE: Different materials couple differently to the V23 lattice, leading to variable solid-earth tidal responses.</p> <p>4. SEASONAL MODULATION: Amplitude variation correlated with Earth's axial tilt relative to the fixed V23 orientation.</p> <p>All predictions are testable with existing superconducting gravimeters (sensitivity ~0.1 nGal/√Hz) using decades of publicly available data from the Global Geodynamics Project. The detection of such sidereal-modulated gravity residuals would constitute direct evidence for vacuum structure and an absolute cosmic frame, while null results would constrain or refute TVS.</p> <p>This work bridges theoretical physics and high-precision geophysics, offering a decisive experimental test between continuous spacetime paradigms and discrete structured vacuum models.</p>
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publishDate 2026
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spellingShingle Predicting Sidereal-Modulated Gravity Anomalies and Directional Dependence
ACOSTA PADILLA, ALFREDO LUIS
Structured Vacuum Theory, V23 algebra, discrete spacetime, gravitational anisotropy, absolute reference frame, vacuum structure, beyond General Relativity, alternative gravity theories, geometric unification
tidal anomalies, sidereal modulation, superconducting gravimeters, gravity residuals, CMB dipole alignment, Strasbourg J9 observatory, Global Geodynamics Project, geophysical testing, precision gravimetry
<p>This paper presents the theory of tides within the Structured Vacuum Theory (TVS) framework, where the vacuum is a discrete V23 lattice with dodecahedral symmetry. Unlike conventional theories (Newtonian or General Relativity), which describe tides as differential forces or spacetime curvature, TVS explains tides as elastic tension in the structured vacuum.</p> <p>The theory makes several novel, falsifiable predictions:</p> <p>1. SIDEREAL-MODULATED ANISOTROPY: A directional dependence in gravitational acceleration with relative amplitude Δg/g ≈ 1.2×10⁻¹², aligned with the CMB dipole direction (RA = 168.4°, Dec = -6.6°).</p> <p>2. PRECISE TEMPORAL SIGNATURE: For the Strasbourg J9 Observatory (48.6°N, 7.75°E), a 3.3 nGal anomaly peaking when Local Sidereal Time = 11h13m (approximately 01:58 CET and 13:58 CET daily).</p> <p>3. MATERIAL DEPENDENCE: Different materials couple differently to the V23 lattice, leading to variable solid-earth tidal responses.</p> <p>4. SEASONAL MODULATION: Amplitude variation correlated with Earth's axial tilt relative to the fixed V23 orientation.</p> <p>All predictions are testable with existing superconducting gravimeters (sensitivity ~0.1 nGal/√Hz) using decades of publicly available data from the Global Geodynamics Project. The detection of such sidereal-modulated gravity residuals would constitute direct evidence for vacuum structure and an absolute cosmic frame, while null results would constrain or refute TVS.</p> <p>This work bridges theoretical physics and high-precision geophysics, offering a decisive experimental test between continuous spacetime paradigms and discrete structured vacuum models.</p>
title Predicting Sidereal-Modulated Gravity Anomalies and Directional Dependence
topic Structured Vacuum Theory, V23 algebra, discrete spacetime, gravitational anisotropy, absolute reference frame, vacuum structure, beyond General Relativity, alternative gravity theories, geometric unification
tidal anomalies, sidereal modulation, superconducting gravimeters, gravity residuals, CMB dipole alignment, Strasbourg J9 observatory, Global Geodynamics Project, geophysical testing, precision gravimetry
url https://doi.org/10.5281/zenodo.18449009