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The structure of the atom from the point of view of the Acta Universi (AU) hypothesis
1. Библиография
2. Acta Universi (AU) — основные работы
3. Yashchenko, D. E. (2026). The act of recording the primary thought-form as the initiator of the expansion of the Universe / «Акт записи первичной мыслеформы как инициатор расширения Вселенной». Zenodo. https://doi.org/10.5281/zenodo.22065358
4. Yashchenko, D. E. (2026). «Dark matter» from the point of view of the Acta Universi hypothesis / «Тёмная материя» с точки зрения гипотезы Acta Universi. Zenodo. https://doi.org/10.5281/zenodo.21766354
5. Yashchenko, D. E. (2026). Acta Universi: Emergent Spacetime from Entropy of Thought and Integrated Information / Acta Universi: пространство-время, возникающее из энтропии мысли и интегрированной информации. Zenodo. https://doi.org/10.5281/zenodo.20845267
6. Yashchenko, D. E. (2026). Facts and observations that were previously unexplained, but now Acta Universi explains and is able to explain / Факты и наблюдения, ранее необъяснимые, теперь которые Acta Universi объясняет и способна объяснить. Zenodo. https://doi.org/10.5281/zenodo.20362486
7. Yashchenko, D. E. (2026). Gravity is the entropy gradient / Гравитация — это градиент энтропии. Zenodo. https://doi.org/10.5281/zenodo.20082347
8. Yashchenko, D. E. (2026). Theoretical study of the AU field (updated version 2026) / Теоретическое исследование AU-поля (версия 2026, дополненная). Zenodo / Preprints.ru. https://doi.org/10.5281/zenodo.19728312
9. Yashchenko, D. E. (2026). Entropy and its radiation in dark energy in the Acta Universi hypothesis. Zenodo. https://doi.org/10.5281/zenodo.18127658
10. Yashchenko, D. E. (2026). The concept of thought forms as a consequence of the Acta Universi hypothesis on the nature of dark energy and data from the Dark Energy Spectroscopic Instrument (DESI). Zenodo. https://doi.org/10.5281/zenodo.20308641
11. Yashchenko, D. E. (2026). Acta Universi thought forms / Acta Universi мыслеформы. Zenodo. https://doi.org/10.5281/zenodo.20205812
12. Yashchenko, D. E. (2026). LAW OF CONSERVATION OF CAUSALITY FOR THE AU-FIELD / ЗАКОН СОХРАНЕНИЯ ПРИЧИННОСТИ ДЛЯ AU-FIELD. Zenodo. https://doi.org/10.5281/zenodo.19689635
13. Yashchenko, D. E. (2026). Consciousness in bacteria under the Acta Universi hypothesis. Zenodo. https://doi.org/10.5281/zenodo.18143336
14. Yashchenko, D. E. (2026). Animal consciousness in the framework of the Acta Universi hypothesis. Zenodo. https://doi.org/10.5281/zenodo.18143379
15. ________________________________________
16. Интерпретации квантовой механики
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23. ________________________________________
24. Информационно-теоретический подход в квантовой химии
25. Zhao, Y., Ayers, P. W., & Liu, S. (2025). An Information-Theoretic Perspective on Molecular Quantum Mechanics. PhD Thesis, McMaster University. http://hdl.handle.net/11375/32230
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29. ________________________________________
30. Эмерджентная гравитация и AdS/CFT
31. Emergent Holographic Forces from Tensor Networks and Criticality (2025). Physical Review D.
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39. A Spectral Exclusion Principle for Emergent Spacetime from a Non-Commutative Twistor Geometry (2025). Zenodo.
40. ________________________________________
41. Нелокальная гравитация
42. Dwarf galaxies in non-local gravity (2025). Monthly Notices of the Royal Astronomical Society.
43. Topology-Induced Nonlocal Gravity on a Mass-Dependent Fractal Foliation (2025). Zenodo.
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47. ________________________________________
48. Теория интегрированной информации (IIT) и сознание
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53. ________________________________________
54. Квантовая биология и микротрубочки
55. Chen, R.-H., Dong, J., Yang, W., Ai, Q., & Long, G.-L. (2025). Quantum Biology, Quantum Simulation and Quantum Coherent Devices. arXiv:2511.14363.
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61. The Unified Coherence Field Theory: Integrating Quantum Consciousness, Biophotons, and Death Dynamics (2025). Zenodo.
62. ________________________________________
63. Квантовая декогеренция и сверхтонкая структура водорода
64. Berrada, K., & Bougouffa, S. (2025). Unveiling Sudden Transitions Between Classical and Quantum Decoherence in the Hyperfine Structure of Hydrogen Atoms. Entropy, 27(11), 1161. https://doi.org/10.3390/e27111161
65. Harnessing Quantum Entanglement and Fidelity in Hydrogen Atoms: Unveiling Dynamics Under Dephasing Noise (2025). MDPI / Scilit.
66. Bell Nonlocality and EPR Steering Decay in Dephasing Hyperfine Spins (2025). InspireHEP.
67. ________________________________________
68. Информационная структура периодической таблицы
69. The Periodic Table as an Emergent Helicoidal Manifold: A Unified Information-Theoretic Analysis of the Atomic Elements Z = 1–103 (2026). MDPI / DOAJ.
70. Spiral Representation of the Periodic Table: A Unified 3D Analysis of Information-Theoretic Functionals for the Atomic Elements Z = 1–103 (2025). Preprints.org.
71. The Fundamental Conservation of Information Extended (2025). Zenodo.
72. ________________________________________
73. Квантовое сознание и квантовая когнитивистика
74. A Quantum Paradigm in Conscious Experience and Cognitive Process (2025). Journal of Physics: Conference Series.
75. Quantum Models of Consciousness from a Quantum Information Science Perspective (2025). University of Helsinki.
76. Quantum information theoretic approach to the hard problem of consciousness (2025). Physics of Life Reviews, 251, 105458.
77. Quantum-like Qualia hypothesis: from quantum cognition to quantum perception (2025). Frontiers in Psychology, 15.
78. A Framework for Free Will within a Quantum Universe (2025). Journal of Physics: Conference Series, 2948, 012017.
79. Plotnitsky, A. (2025). Ambiguity and free will: the topology of decision in quantum and quantum-like sciences. Philosophical Transactions A.
80. ________________________________________
81. Эмерджентное пространство-время и запутанность
82. Quantum Gravity via Emergent Spacetime (QVEST) (2025). Zenodo.
83. Topological Shielding of Dark Matter Coupling in Emergent Spacetime: Five Definitive Tests (2025). Zenodo.
84. Le, H.-A., Lee, H. C., & Yang, S.-R. E. (2025). Quantum entanglement of anyonic charges and emergent spacetime geometry. New Journal of Physics, 28.