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On the Availability of Absorbing Single Photon from Perfectly Absolute Vacuum: A way stabilizing quantum fluctuations

ORAL

Abstract

This paper opens unsolved facts at behind of self-creation phase, Ph of initial photon, IP in perfectly absolute vacuum, PAV. An approach, that applies for shaping events to have solution with topological processes, TPs is given. TPs give possibilities to explain characteristics of specific events in quantum level by decomposing of single point spaces, sPSs and null spaces, NSs to their ingredients. Thing space, ThS is a topological space, where things, Ths, are incarcerated as embedded in sPS from NS at a point of ThS at least. If a sPS changes its state, St between its St-1 up and St-3 down then it cannot spread except its inwards, inws so it cannot pass to its outwards, ouws; therefore, it is lost in ThS but if it passes to St-2 down and/or St-4 up of its ouws then it passes to its ouws and begins to spread in ThS; therefore, it appears. Incarceration Phs are possible in 4 steps from PAV; i.e., 1) Fluctuating (appearing, push↑, p↑) Ph: to St-2 from St-1. Creation Ph of IP from NS: there are still PAVs. 2) Disappearing (↓pull, ↓p) Ph: to St-3 from St-4. Gravity interaction on IP: change in path comes from mechanism returning PAV back and it is a result of push↑↓pull effect, p↑↓p. The irregular differentials govern transitions and p↑↓p.

The flicks have Sts varying between exist-Th, eTh and non-eTh, neTh. Spontaneous variations are designable of Phs as {eTh, neTh} → (p↑, ↓p) by theoretically suitable equipment, p↑↓p-device providing specific conditions, principles, and equations of time energy. p↑↓p-device gives IP as absorbed from PAV.

Publication: 1-T. Sengor, "Inflective Spaces: Contribution into the Physical Truth," 2019 URSI International Symposium on Electromagnetic Theory (EMTS), 2019, pp. 1-4, doi: 10.23919/URSI-EMTS.2019.8931478. https://ieeexplore.ieee.org/document/8931478.<br><br>2-T. Sengor, "The Quantum Electromagnetism and Gravity Waves in Inflective Spaces with Topological Transformations of De-formations and Re-formations: Designing an Elementary Particle," 2021 XXXIVth General Assembly and Scientific Symposium of the International Union of Radio Science (URSI GASS), 2021, pp. 1-4, doi:10.23919/URSIGASS51995.2021.9560637. https://ieeexplore.ieee.org/abstract/document/9560637.<br><br>3-T. Sengor, "The Globally Compact Multi-Network of the Earth: the self-controlling mechanisms in natural hazards above significant level," Geophysical Research Abstracts, Vol. 21, EGU2019-17127,2019, General Assembly 2019, Vienna, Austria, 7-12 April 2019, https://meetingorganizer.copernicus.org/EGU2019/EGU2019-17127.html.<br><br>4-T. Sengor, "Introduction to TTs Guided by Null-to-Wave-to-Particle Deformations: inflective wave functions of a single point space," in Abstracts of PIERS Rome, Italy, 17– 20 June 2019.<br><br>5-T. Sengor, "Topological Ingredients of Single Point Spaces: the phases of nonexistence to existence passages for null space to thing space," in Abstracts of PIERS Rome, Italy, 17– 20 June 2019.<br><br>6-T. Sengor, "Topological Decompositions of Single Point Spaces and Null Spaces: creation phase of light at early universes," in Abstracts of PIERS Rome, Italy, 17– 20 June 2019.<br><br>7-T. Sengor, "Spontaneous generation and propagation capabilities as pseudo embedded but stochastically communication and intelligence like mechanisms in complex exotic molecular chains: CI-in-CEMCs," APS March Meeting 2022.<br><br>8-T. Sengor, "Topological processes building ingredients of the most simple available particles, gravity, and electromagnetism from null space: Time energy concept as creater of waves and particles by single point space," APS April Meeting 2022.<br><br>9-T. Sengor, " The self-controlling mechanisms in natural processes, events, ingredients, and behaviors," APS April Meeting 2022.<br><br>10-T. Sengor, "The State Space Model for Atomic Interactions," Invited Paper, PIERS 2013 in Stockholm, Progress in Electromagnetics Research Symposium, Stockholm, Sweden, 12 -15 August 2013. <br><br>11-T. Sengor, "On the Availability of Electromagnetically Equivalence Processes Relevant to Worldwide Spreadable Diseases Manifolds," 2021 XXXIVth General Assembly and Scientific Symposium of the International Union of Radio Science (URSI GASS), 2021, pp. 1-4, doi:10.23919/URSIGASS51995.2021.9560517. https://ieeexplore.ieee.org/document/9560517.<br><br>12-T. Sengor, "On the Availability of Processes for Creation a Thing Space from a Null Space," 2019 URSI International Symposium on Electromagnetic Theory (EMTS), 2019, pp. 1-4, doi: 10.23919/URSIEMTS.2019.8931455. https://ieeexplore.ieee.org/document/8931455.<br><br>13-T. Sengor, "The Compact System Electromagnetically Equivalent to the Earth's Natural Events and Disasters with Application to Seismic Processes: The Completely Compact Electromagnetically Equivalent Earth Network (CCEEEN)," 2021 XXXIVth General Assembly and Scientific Symposium of the International Union of Radio Science (URSI GASS), 2021, pp. 1-4, doi:10.23919/URSIGASS51995.2021.9560618.<br>https://ieeexplore.ieee.org/document/9560618.<br><br>14- T. Sengor, "The Electromagnetically Equivalent Complex Network Modeling of Compact Seismo-Climatic Processes for the Complete Earth," Solicited paper, European Geosciences Union, Geophysical Research Abstracts, Vol. 11, EGU2009-01264,2009, European Geosciences Union General Assembly 2009, Vienna, Austria, 19-24 April 2009 (KRTA).<br><br>15- T. Sengor, "State Approach in Artificial Materials Development in Electromagnetics", INVITED PAPER, Proceedings of Progress in Electromagnetics Research Symposium, pp. 568, The Electromagnetics Academy (USA), University of Pisa, Pisa, Italy, March 28-31, 2004.<br><br>16- T. Sengor, "Principle for possible memory structures with extra high density by using the electron sharing mechanisms of atoms in an inflective orbit", Proc. SPIE 9225, Quantum Communications and Quantum Imaging XII, 92250N (October 8, 2014); <br>doi:10.1117/12.2063525; http://dx.doi.org/10.1117/12.2063525,<br><br>17- T. Sengor, "Beyond the Boundaries of the LHC Experiment: the limits and conflicts of expectations," International Summer School and Conference on High Energy Physic, Standard Model and Beyond, Mugla, Türkiye, 28 August- 8 September 2010.<br><br>18- T. Sengor, "The Optimizer Topology Characteristics in Seismic Hazards," AGU (American Geophysical Union) Fall Meeting, San Francisco, California, U.S.A., 13-18 December 2015.<br><br>19- T. Sengor, "Seismic - Climatic - Hazardous Events Estimation Processes via the Coupling Structures in Conserving Energy Topologies of the Earth," AGU (American Geophysical Union) Fall Meeting, San Francisco, California, U.S.A., 15-19 December 2014.<br><br>20- T. Sengor, "Inflective Structures on the Orbits of Electron Sharing Molecules with <br>the Stochastic Discontinuity Effects: The Definition of Orbitron Mechanism," 7th Nanoscience and Nanotechnology Conference, NanoTR VII, Istanbul, Turkey, 27 June- 1 July 2011. <br><br>21- T. Sengor, "The state space approach and modified state equations solution in dispersive chiral media," XXVIIIth General Assembly of the International Union of Radio Science, URSI GA 2005, Abstracts Book, COM2-01430-2005; Conference CD, URSI New Delhi 2005, paper no. COM2-01430-2005, New Delhi, India, 23-29 October 2005.<br><br>22- T. Sengor, "The Mechanisms of Interactions of Irregularly Oscillating Bodies by Electromagnetic Waves, Paper in Monograph Book Title: Electromagnetic Phenomena Related to Earthquake Prediction. Eds.: M. Hayakawa and Y. Fujinawa, TERRA Pub. Comp., Tokyo, pp.: 647-666, 1994.<br><br>23-T. Sengor, "Extensions of Maxwell's electromagnetic theory to oscillating bodies," IEEE Antennas and Propagation Society International Symposium. 1996 Digest, 1996, pp. 872-875 vol.2, doi: 10.1109/APS.1996.549734.<br><br>24- T. Sengor, "Possibilities to extend electromagnetism for non-smooth and non-uniformly vibrating media cases," Helsinki University of Technology, Electromagnetics Lab. Report 367, May. 2001, ISBN 951-22-5474-3, ISSN 1456-632X.<br><br>25- T. Sengor, "Interaction of Electromagnetic Waves with Condenced Atomic Structures,'' (in Turkish) 16th Condense Matter Physics Meeting, Gazi University, Ankara, Turkey, 06 November 2009.<br><br>26- T. Sengor, "Designing of Condensed Matter Using Inflective Femto Wires: Introducing the Inflector,'' (in Turkish) 18th Condense Matter Physics Meeting, METU, Ankara, Turkey, 25 November 2012.<br><br>27- T. Sengor, "Topological theory and analytical configuration for a universal community model," Procedia- Soc. and Beh. Sci., 81, 2013, pp. 188-194, doi:10.1016/j.sbspro.2013.06.411.

Presenters

  • Taner Sengor

    Yildiz Technical University (Retired)

Authors

  • Taner Sengor

    Yildiz Technical University (Retired)