GreenTheDream Research Lab maintains this index as the authoritative record of its published work, manuscripts, preprints, books, and review status. Entries are separated by publication stage so readers can distinguish peer-reviewed results from ongoing theoretical and computational research.
Research Snapshot
Content type: Canonical publication index
Coverage: published chapters, preprints, books, and research in development
Primary author: Derrick Covington
Evidence policy: publication status is separated from experimental validation
Last reviewed: June 2026
Publications Index
Peer-Reviewed and Published Work
Active Phase Stabilisation in a Plasma Resonator Using Feedback Control and Auxiliary Scalar-like Coupling
Year: 2026 Status: Published book chapter Pages: 128–153
The study investigates an active-control framework for maintaining phase synchronisation in a modelled plasma resonator. The proposed architecture combines feedback-mediated phase regulation, entropy-aware monitoring, and a phenomenological auxiliary scalar-like coupling channel.
Time-resolved numerical simulations indicate that the feedback system can rapidly drive the resonator into a stable phase-locked regime and maintain coherence within defined operational bounds. The study also identifies a critical instability, described as a tearing threshold, beyond which the control system can no longer preserve phase alignment.
The work distinguishes demonstrated classical or semiclassical phase coherence from the longer-term objective of quantum-coherent operation. It does not claim experimental proof of quantum coherence or discovery of a fundamental scalar field. Instead, it presents a computationally testable control framework connecting classical plasma stabilisation, nonlinear resonator control, and future quantum-feedback applications.
Relevant fields: plasma dynamics; resonant plasma systems; nonlinear feedback and adaptive control; phase synchronisation; coherence preservation; entropy-aware control; quantum-feedback-inspired stabilisation; hybrid classical and quantum resonator architectures.
Citation: Covington, D. (2026). “Active Phase Stabilisation in a Plasma Resonator Using Feedback Control and Auxiliary Scalar-like Coupling.” New Horizons of Science, Technology and Culture, Vol. 9, 128–153. https://doi.org/10.9734/bpi/nhstc/v9/6896
Published chapter · Book volume · ResearchGate record · Author profile
Scalar-Torsion Dynamics in Unified Cosmogenesis
Year: 2025 Status: Published book chapter
Published in New Horizons of Science, Technology and Culture, Volume 1, this chapter develops a scalar-torsion potential within the broader Nudimmud Physics program and studies a smooth cosmological-bounce scenario intended to avoid an initial singularity.
Under Review and Preprints
Unified Framework for Nudimmud Physics: A Computational Approach Through Group Character Integrals
Year: 2025 Status: Preprint available; manuscript in the publication and peer-review pipeline
The manuscript introduces a computational framework for examining force-hierarchy suppression through group character integrals. It combines analytical structure with computational checks and serves as a central reference for the current Nudimmud Physics research program.
Research in Development
Quantum Creation of Universes: A Scalar-Torsion Simulation Framework for Cosmogenesis
Status: Computational research and manuscript development
This project investigates universe nucleation within a scalar-torsion simulation framework, including parameter exploration and post-nucleation evolution. Results remain developmental until the model, numerical assumptions, and validation record are released in a complete manuscript.
Books and Extended Works
Unified Framework for Nudimmud Physics
This extended work presents the computational and conceptual structure of the Nudimmud Physics program for readers who want a longer treatment than the publication summaries provide. It should be read alongside the publication-status labels and methodological limitations documented on this site.
Kindle edition · Softcover edition
Methodology and Open Science
- Status clarity: pages distinguish theory, simulation, prototype planning, preprint, review, and published work.
- Assumptions: mathematical and computational claims are evaluated relative to their stated assumptions, parameter choices, and boundary conditions.
- Reproducibility: supporting equations, parameter tables, computational methods, code, and data are released when publication and project constraints permit.
- Revision trail: preprints and research pages may be updated as review, replication, and further analysis identify necessary changes.
- Limitations: theoretical consistency and numerical output do not by themselves establish experimental confirmation.
Citation and Research Inquiries
Use the DOI or publisher record for published chapters and the versioned ResearchGate record for preprints. Researchers seeking equations, computational details, collaboration, or clarification may use the contact page.
Publication Support Resources
Data & Code Availability · Research FAQ & Glossary · State of the Lab — 2026
For more information about our ongoing work, explore our Active Research Programs and Publications & Peer Review pages.