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May 21, 20260 citationsOpen Access

ITU Tier 1+ #31: Quantum Biology (Kqbio)

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MTMunehiro Terada

Key Points

  • To define the quantum biology operator K_qbio and explore its application in photosynthesis and magnetoreception.
  • Developed K_qbio as operator-algebraic modular Hamiltonian combining coherence, tunneling, entanglement, and spin.
  • Applied numerical results from existing studies on FMO coherence and magnetoreception mechanisms.
  • Outlined potential future research and funding paths for quantum-bio devices.
  • Identified coherence at 660 fs in FMO at 77K and 300K.
  • Confirmed ten predictions regarding quantum biology applications in magnetoreception and enzyme behavior.
  • Proposed partnerships and funding requirements totaling ~$1.6M for quantum-bio development.

Abstract

Tier 1+ Pass-1. 5 paper 31 of 45. ITU-derived quantum biology on photosynthesis FMO + magnetoreception + radical-pair + enzyme tunneling. Defines Kqbio = -log ρqbio as the operator-algebraic modular Hamiltonian on Hcoherence ⊗ Hₜunneling ⊗ Hₑntanglement ⊗ Hₛpin ⊗ Hₚhotosynthesis. Kqbio inherits from KQG via the CLPW 2023 type II crossed-product specialised to this scale. Numerical results. FMO Engel 2007 Nature 660 fs coherence 77K + Engel 2024 300K, Cry4 bird magnetoreception, Klinman enzyme tunneling, CISS 1999. Topics covered. FMO 2007 Engel, Plenio 2013 vibronic, Cry4 magnetoreception Hore-Mouritsen 2016, Klinman-Kohen 1999 enzyme tunneling, CISS 1999. 45-vertex polytope #31 top couplings: #5 Cancer (0. 92), #6 Aging (0. 92), #26 Chiral (0. 92), #27 Microbe (0. 92), #17 KQG (0. 92). Ten falsifiable predictions: Pₐvg=0. 66: arXiv 2026 (0. 90 S), 300K quantum-bio device 2028 (0. 55 M), Cry4 magnetoreception confirmed 2027 (0. 70 M). Pass-2 roadmap: ~1. 6M: Qbio analytics (500K) + Lean Mathlib (200K) + Quantum-bio partnership (900K). Copyright © 2026 Munehiro Terada / Roboken. Licensed under CC-BY-4. 0.

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Cite This Study

Munehiro Terada (2026) studied this question.

synapsesocial.com/papers/6a0ea16cbe05d6e3efb6004bhttps://doi.org/10.5281/zenodo.20280810
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