🔬 physics

A Geometric Wavefront Framework for Cosmological Expansion, Gravitation and Quantum Phenomena

This paper proposes a unified geometric framework where the observable universe is a finite-thickness hyperspherical wavefront propagating in a four-dimensional Euclidean space, reinterpreting cosmic expansion, gravity, and quantum phenomena as emergent geometric consequences of this structure rather than requiring fundamental constants like dark energy or intrinsic quantum indeterminacy.

Gary Jarvis2026-07-21
🔬 physics

Quantum Completion of the Flux-Gauge Area Law: From SU(N ) Spin Networks to Holographic Entanglement

This paper bridges the gap between combinatorial flux-gauge models and quantum holography by demonstrating that SU(N) spin networks constitute a genuine random tensor network, where a specific statistical assumption on intertwiners yields an emergent radial direction and a numerically verified entanglement entropy that scales with the boundary cut area, thereby providing a concrete quantum derivation for the Ryu–Takayanagi law.

Mohammad Hannan2026-07-21
🔬 physics

The Jayagnana Infinity (J∞) Framework: A Unified Matrix-Theoretic Approach to Orbital Dynamics, Stability, and Symmetry

This paper presents the Jayagnana Infinity (J∞) framework, which unifies Newtonian orbital dynamics into a single state-space matrix equation and provides a closed-form derivation of the Laplace-Runge-Lenz vector's invariance and evolution, validating the model's numerical stability and accuracy across diverse celestial systems from Earth to exoplanets and neutron stars.

N. Thirugnanamuthu2026-07-21
🔬 physics

Receptivity and Biorthogonal Decomposition in a Reacting Temporal Mixing Layer

This paper investigates receptivity and biorthogonal decomposition in a reacting temporal mixing layer, demonstrating how distributed reacting thermodynamics reorganize compressible shear-layer instability and identifying mass, mixture-fraction, and thermochemical forcing as the primary mechanisms for exciting the unstable finite-thickness Kelvin–Helmholtz branch.

Sriram P. Kalathoor, Joseph C. Oefelein2026-07-20
🔬 physics

Application of spin-dependent microwave photoconductivity for detection magnetic resonance of recombination centers on silicon surface and Si/SiO2 interface

This paper reports the successful detection of surface paramagnetic centers on silicon wafers and the Si/SiO2 interface using spin-dependent microwave photoconductivity, observing response variations not only at magnetic resonance but also at magnetic field values corresponding to the crossing and anticrossing points of magnetic sublevels.

Leonid Vlasenko2026-07-20
🔬 physics

Study on structural, conduction mechanisms, and non-Debye behavior of YbNbO 4 ceramic: insights into charge carrier dynamics

This study characterizes the structural, microstructural, and electrical properties of YbNbO4 ceramic, revealing its non-Debye relaxation behavior, semiconducting nature governed by the correlated barrier hopping model, and potential for use in electronic and energy storage applications.

Mohamed Mounir Bouzayani, Imed Kammoun, Wael Z. El-sayad, Souad Chkoundali, Mustapha Zaghrioui, Abderrazek OUESLATI, Abd (…)2026-07-20