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Acta Universi: зарождение и эволюция жизни (содержит уравнение эволюции жизни из AU-лагранжиана)
1. Библиография
2. Acta Universi (AU) — основные работы
3. Yashchenko, D. E. (2025). The theory of panspermia in the Acta Universi hypothesis. Zenodo. https://doi.org/10.5281/zenodo.18128124
4. 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
5. 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
6. 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
7. 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
8. Yashchenko, D. E. (2026). Gravity is the entropy gradient / Гравитация — это градиент энтропии. Zenodo. https://doi.org/10.5281/zenodo.20082347
9. 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) / Концепция мыслеформ как следствие гипотезы Acta Universi о природе темной энергии и данных Dark Energy Spectroscopic Instrument (DESI). Zenodo. https://doi.org/10.5281/zenodo.20308641
10. Yashchenko, D. E. (2026). Acta Universi thought forms / Acta Universi мыслеформы. Zenodo. https://doi.org/10.5281/zenodo.20205812
11. Yashchenko, D. E. (2026). «Thought-form» as a metaphor for any recording of information in the Acta Universi hypothesis / «Мыслеформа» как метафора для любой записи информации в гипотезе Acta Universi. Zenodo. https://doi.org/10.5281/zenodo.22010383
12. Yashchenko, D. E. (2026). Connection of kairos-time with thermodynamics in the Acta Universi hypothesis / Связь кайрос-времени с термодинамикой в гипотезе Acta Universi. Zenodo. https://doi.org/10.5281/zenodo.22019999
13. Yashchenko, D. E. (2026). The «Physical Vacuum» from the Point of View of the Acta Universi Hypothesis (Extended Version). Zenodo. https://doi.org/10.5281/zenodo.22020141
14. Yashchenko, D. E. (2026). Animal consciousness in the framework of the Acta Universi hypothesis. Zenodo. https://doi.org/10.5281/zenodo.18143379
15. Yashchenko, D. E. (2026). Consciousness in bacteria under the Acta Universi hypothesis. Zenodo. https://doi.org/10.5281/zenodo.18143336
16. 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
17. Yashchenko, D. E. (2026). ACTA UNIVERSI E TEORIA DA OBJETIVIDADE: informação, consciência e disciplina modal em uma análise crítico-propositiva da emergência do espaço-tempo a partir da entropia do pensamento e da informação integrada. Zenodo. https://doi.org/10.5281/zenodo.22079105
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19. DESI (Dark Energy Spectroscopic Instrument) — данные и космологические ограничения (2025–2026)
20. DESI Collaboration, Abdul-Karim, M., et al. (2025). DESI DR2 results. II. Measurements of baryon acoustic oscillations and cosmological constraints. Physical Review D, 112(8), 083515. arXiv:2503.14738.
21. DESI Collaboration, Abdul-Karim, M., et al. (2025). DESI DR2 results. I. Baryon acoustic oscillations from the Lyman Alpha Forest. arXiv:2503.14739.
22. DESI Collaboration (2025). Data Release 1 of the Dark Energy Spectroscopic Instrument. arXiv:2503.14745.
23. Roy Choudhury, S. (2025). Cosmology in Extended Parameter Space with DESI Data Release 2 Baryon Acoustic Oscillations: A 2σ+ Detection of Nonzero Neutrino Masses with an Update on Dynamical Dark Energy and Lensing Anomaly. The Astrophysical Journal Letters, 986, L31. https://doi.org/10.3847/2041-8213/ade1cc
24. Is Dark Energy Dynamical in the DESI Era? A Critical Review (2025). DESI DR2 shows a preference for dynamical dark energy at 3.9σ, 2.8σ, and 3.8σ when combined with CMB, Pantheon+ etc.
25. DESI DR2 combined with Planck CMB and DES Year 5 supernovae finds w_0>-1, w_a<0 at 4.2σ.
26. Silva, E., Sabogal, M. A., Scherer, M., Nunes, R. C., Di Valentino, E., et al. (2025). Cosmological implications of DESI DR2 BAO measurements in light of the latest ACT DR6 CMB data. Physical Review D, 112(8), 083529.
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28. Голографическая тёмная энергия (HDE) и её модификации
29. Wu, P.-J., Li, T.-N., Du, G.-H., & Zhang, X. (2026). Observational challenges to holographic and Ricci dark energy paradigms: Insights from ACT DR6 and DESI DR2. Chinese Physics C, 50(4), 045105. https://doi.org/10.1088/1674-1137/ae3be2
30. Observational constraints on fractional holographic dark energy in the light of DESI DR2 (2026). arXiv:2608.09732.
31. Late-time cosmological constraints on three holographic dark energy models with DESI DR2 BAO and Type Ia supernovae (2026). arXiv:2607.09732.
32. Cosmological constraints on 4D Einstein-Gauss-Bonnet gravity and Kaniadakis holographic dark energy (2025). JCAP, 05(2026), 012. arXiv:2511.21789.
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34. Абиогенез и происхождение жизни (2025–2026)
35. Self-synthesising RNA strand offers clues to life's origins (2026). Discovery of QT45, a 45-nucleotide RNA polymerase ribozyme performing two key self-replication reactions. Chemistry World, February 16, 2026.
36. Short strands of RNA nearly self-replicate, recreating a possible step in the dawn of life (2026). PNAS, March 6, 2026.
37. A polymerase ribozyme increases copying fidelity through pyrophosphate-mediated RNA repair (2026). PNAS, June 9, 2026.
38. The Information-Energy Phase Transition Theory: A Tiered Framework for Life's Emergence from Simple to Complex Replicators (2025). Zenodo, November 10, 2025.
39. Redox chemistry of early Earth and the origin of life (2026). Communications Chemistry, 9, Article 143.
40. Bifurcations and phase transitions in the origins of life (2025). Philosophical Transactions of the Royal Society, October 2, 2025.
41. Progress and persistent questions in understanding the origin of life on Earth (2026). Discover Life, August 2, 2026.
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43. Астробиология и панспермия (2025–2026)
44. Extreme Microbes Can Survive The Journey Between Planets (2026). Deinococcus radiodurans survives shock pressures up to 3 GPa; ~60% survival at 2.4 GPa. ScienceAlert, March 4, 2026.
45. Hardy microbe survives asteroid impact pressures, boosting panspermia hypothesis (2026). Deinococcus radiodurans: ~95% survival at 1.4 GPa, ~90% at 1.9 GPa, ~60% at 2.4 GPa. Donga Science, March 4, 2026.
46. Extremophile survives the transient pressures associated with impact-induced ejection from Mars (2026). Journal of Visualized Experiments, March 5, 2026.
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48. Квантовая биология, сознание и междисциплинарные исследования
49. Ansari, A. H. (2026). Progress and persistent questions in understanding the origin of life on Earth. Discover Life.
50. Karabasoglu, C., Saytas, A., Akgol, B., Mercimek, S., & Toparlak, O. D. (2026). Assembly of Replicating Protocells with Primitive Metabolism. Sage Journals, April 1, 2026.
51. What it takes to solve the origins of life: An integrated review. Part 2: Theoretical methods and emerging trends (2026). ResearchGate / University of Lisbon, April 15, 2026.
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53. Примечание: библиография включает как классические работы, составляющие теоретический фундамент современной космологии и теории происхождения жизни, так и актуальные публикации 2025–2026 годов, отражающие современное состояние исследований в соответствующих областях. Отдельный раздел посвящён работам автора гипотезы Acta Universi.