RESEARCH & PUBLICATIONS

Publications

Research made public, testable and open to scrutiny.

Precog Technologies develops theoretical and phenomenological research intended to produce explicit predictions that can be confronted with observation and experiment.

Each publication is presented with its scientific status clearly identified, so that a theoretical proposal, an experimental constraint and an established result are never confused.

RESEARCH SQUARE PREPRINT · 2025

Gravity as Geometric Filtration: A Unified Framework for Cosmological and Quantum Phenomena

Anisse Zerouta ORCID 0000-0001-7966-0746
Precog Technologies — Theoretical Physics Division, Paris, France

Manuscript date: April 14, 2025
Posted: May 2, 2025
DOI: 10.21203/rs.3.rs-6570489/v1

Research areas
Emergent Gravity · Cosmology · Geometric Filtration · Djamilars · Quantum Phenomena

Summary

This work introduces a theoretical framework in which gravitation is modeled as an emergent effect associated with geometric filtration through postulated microscopic structures called Djamilars.

The framework introduces geometric parameters describing aperture and density and explores possible consequences for gravitational coupling, galaxy dynamics, gravitational lensing, the Hubble tension and the quantum–classical transition.

These are proposed implications of the framework, not established conclusions.

CURRENT RESEARCH MANUSCRIPT

Geometric Localization and the Quantum-Classical Transition

A Phenomenological Lindblad Model Constrained by Matter-Wave Interferometry and LISA Pathfinder

Anisse Zerouta ORCID 0000-0001-7966-0746
Precog Technologies — Theoretical Physics Division, Paris, France

This document is presented as a current research manuscript; no publication DOI is associated with this version.

Research areas
Quantum Localization · Open Quantum Systems · Matter-Wave Interferometry · LISA Pathfinder · Quantum–Classical Transition

Summary

This work isolates a deliberately narrower phenomenological localization sector motivated by geometric filtration and formulates it as a completely positive open-system model.

The model is confronted with MUSCLE sodium-cluster interferometry and LISA Pathfinder force-noise measurements. The analysis produces quantitative conditional constraints but no statistically secure localization detection, and the resulting bounds do not establish an underlying microscopic spacetime structure.

PUBLICATION PRINCIPLE

Scientific status matters.

Precog Technologies distinguishes between theoretical proposals, research manuscripts, preprints, experimental constraints and independently established evidence.

Publication makes a model available for scrutiny.
It does not, by itself, make the hypothesis true.