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temporal-shear

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TEP-GL

Temporal-Spatial Coupling in Gravitational Lensing: A Reinterpretation of Dark Matter Observations — Reinterprets dark matter observations as phantom mass from temporal shear in gravitational lensing. Conformal metric coupling generates gravitational shear signatures, resolving strong lensing time delays and the core-cusp problem.

  • Updated Aug 10, 2026
  • HTML

TEP: Dynamical Proper Time and the Illusion of Primordial Deuterium — Three-sightline reanalysis (Q1009, PKS 1937, J1332) shows unrestricted H preferred over true-D at p ≤ 0.001 (Bonferroni-corrected). Gate 8 analysis rejects isotope-D for all three. TEP absorber field predicts blueward sign with 132× screening contrast.

  • Updated Sep 10, 2026
  • Python

Temporal Equivalence Principle: A Unified Resolution to the JWST High-Redshift Anomalies — JWST high-redshift anomalies unified via TEP. SUSPENSE kinematic comparison (N=15) shows R_ML predicts spectral age (ρ=+0.556, p=0.032) beyond stellar mass. Large-sample photometry (N=1,283) and nested Bayesian comparison (ln BF=+64.1) favour TEP.

  • Updated Aug 21, 2026
  • Python

Cosmological Voids vs Temporal Shear: KBC/MOND void profiles rejected at Δχ² > 100 against Pantheon+ (1,701 SNe, full STAT+SYS covariance). R_H = 1.009 ± 0.006 excludes predicted 5% decline at 8.4σ. Cepheid–TRGB divergence (2.39σ), M31/LMC PL gradients (3.65σ, 3.30σ), and SALT3 attenuation (~70%) trace the TEP temporal-shear signature.

  • Updated Aug 30, 2026
  • Python

Temporal Equivalence Principle: Temporal Shear Recovery in Gaia DR3 Wide Binaries — Gaia DR3 wide binaries (341,315 systems) show Temporal Shear recovery at R_s=2,646±182 AU (Δχ²=14,845 vs Newtonian), with environmental ordering confirmed (p<10⁻⁴).

  • Updated Aug 18, 2026
  • Python

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