The Physics Revolution You Haven't Heard About
Wave Mechanics Revolution: Challenging Scientific Orthodoxy
Discover groundbreaking research that challenges decades of established scientific theory. This publication reveals fundamental flaws in mainstream microwave absorption research while exposing systematic problems in academic peer review that suppress innovative scientific viewpoints.
Why You Should Subscribe
🔬 Exclusive Research: Access revolutionary wave mechanics theory of microwave absorption film that challenges mainstream impedance matching approaches, backed by publications in prestigious journals including Journal of Magnetism and Magnetic Materials, Journal of Applied Physics, and Optics and Laser Technology.
📊 Academic Transparency: Critical analyses of peer review bias and institutional resistance to scientific innovation, with first-hand documentation of editorial misconduct and reviewer bias from major journals.
🎯 Scientific Integrity: Advocacy for transparency reforms to restore rigorous scientific evaluation and evidence-based research over consensus-driven orthodoxy.
What's Coming
Revolutionary Wave Mechanics Theory: Detailed explanations of our breakthrough theory and its advantages over current approaches, including why impedance matching theory and quarter-wavelength models are fundamentally flawed.
Academic Publishing Exposés: Documentation of peer review failures and editorial bias at prestigious journals, plus analysis of systemic problems preventing scientific progress.
Scientific Reform Commentary: In-depth coverage of "cargo cult science" practices in modern academia and practical solutions for institutional change.
Research Collaborators in the Establishment of Wave Mechanics Theory of Microwave Absorption
Michael G. B. Drew
The University of Reading, UK
Ying Liu
Shenyang Normal University
ORCID: https://orcid.org/0000-0001-9862-5786
Yue Liu
Shenyang Normal University
ORCID: https://orcid.org/0000-0001-5924-9730
What This Site Offers
1. A Platform That Prioritizes Evidence Over Consensus
Essential reading for scientists frustrated with academic orthodoxy. This Substack serves anyone interested in scientific integrity, breakthrough physics research, and challenging established paradigms.
Explore our archive: Complete Publication List | About This Research
2. How Scientific Establishments Fail to Self-Correct
Featured Critical Analyses:
Commentary on Materials Today's Rejection: Scope as a Shield for Paradigm Protection
Publication Outlets for Sharp Criticism of Academia
Self-Citation Versus External Citation in Academic Publishing
Balancing Transparency and Data Protection in Academic Publishing
Theoretical Primacy in Scientific Inquiry: A Critique of the Empirical Orthodoxy in Modern Research
Scientific Accountability: The Case for Personal Responsibility in Academic Error Correction
3. Leading a Scientific Revolution in Microwave Absorption Theory
Our breakthrough research demonstrates why current theories are fundamentally wrong:
A) Why Current Theories Confuse Film with Material
Key Publications:
- Liu, Y., Liu, Y., Drew, M.G.B. "Wave Mechanics of Microwave Absorption in Films." Journal of Magnetism and Magnetic Materials, 2024, 593, 171850
- Liu, Y., et al. "Reflection Loss is a Parameter for Film, not Material." Non-Metallic Material Science, 2023, 5(1): 38-48
B) Why Current Absorption Mechanisms Are Wrong
- Liu, Y., et al. "A re-evaluation of the mechanism of microwave absorption in film – Part 2: The Real mechanism." Materials Chemistry and Physics, 2022, 291, 126601
- Liu, Y., et al. "Review: Wave mechanics of microwave absorption in films." Optics and Laser Technology, 2024, 178, 111211
C) Why Impedance Matching Theory Is Flawed
- Liu, Y., et al. "A physics investigation on impedance matching theory in microwave absorption film—Parts 1 & 2." Journal of Applied Physics, 2023, 134(4)
- Liu, Y., et al. "Unexpected Results in Microwave Absorption – Part 1." Surfaces and Interfaces, 2023, 40, 103022
D) Why Quarter-Wavelength Theory Fails
- Liu, Y., et al. "A theoretical investigation of the quarter-wavelength model — Parts 1 & 2." Physica Scripta, 2021-2022
- Liu, Y., et al. "Wave Mechanics of Microwave Absorption in Films: Multilayered Films." Journal of Electronic Materials, 2024, 53, 8154–8170
E) Common Publication Mistakes Exposed
- Liu, Y., et al. "Recognizing problems in publications concerned with microwave absorption film and providing corrections." Industrial & Engineering Chemistry Research, 2025
F) Mathematical and Theoretical Foundations
Complete theoretical framework including transmission line theory applications and fundamental wave mechanics principles, published across multiple peer-reviewed journals and book chapters.
G) The Latest Papers
The latest papers:
Yue Liu,Ying Liu,Michael G. B Drew,Citation Issues in Wave Mechanics Theory of Microwave Absorption: A Comprehensive Analysis with Theoretical Foundations and Peer Review Challenges, 2025, arXiv:2508.06522v2, https://doi.org/10.48550/arXiv.2508.06522
Yue Liu. Non-Mainstream Scientific Viewpoints in Microwave Absorption Research: Peer Review, Academic Integrity, and Cargo Cult Science, Preprints.org, preprint, 2025, DOI:10.20944/preprints202507.0015.v2, Supplementary Materials
Yue Liu, Michael G.B. Drew, Ying Liu,Theoretical Insights Manifested by Wave Mechanics Theory of Microwave Absorption—Part 1: A Theoretical Perspective, Preprints.org, Preprint, 2025, DOI:10.20944/preprints202503.0314.v4, supplementary.docx (919.54KB ).
Yue Liu, Michael G.B. Drew, Ying Liu, Theoretical Insights Manifested by Wave Mechanics Theory of Microwave Absorption—Part 2: A Perspective Based on the Responses from DeepSeek, Preprints.org, Preprint, 2025, DOI:10.20944/preprints202504.0447.v3, Supplementary Materials IVB. Liu Y, Drew MGB, Liu Y. Theoretical Insights Manifested by Wave Mechanics Theory of Microwave Absorption - A Perspective Based on the Responses from DeepSeek. Int J Phys Res Appl. 2025; 8(6): 149-155. Available from: https://dx.doi.org/10.29328/journal.ijpra.1001123, Supplementary Materials, DOI: 10.29328/journal.ijpra.1001123
Join the Revolution
This isn't just about correcting one theory—it's about restoring scientific integrity to physics research. When basic undergraduate principles can disprove theories dominating entire research fields, the system needs fundamental change.
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"The first principle is that you must not fool yourself—and you are the easiest person to fool." — Richard Feynman

