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Main Author: Cabrera Vera, Kittim Lorena
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Published: Zenodo 2025
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Online Access:https://doi.org/10.5281/zenodo.15777463
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author Cabrera Vera, Kittim Lorena
author_facet Cabrera Vera, Kittim Lorena
contents <p>This paper proposes a novel theoretical model linking the four-generation migratory cycle of the monarch butterfly (Danaus plexippus) to the 720-degree rotational symmetry of spin-½ particles in quantum mechanics. Drawing on the SU(2) spinor structure, the study maps each monarch generation to a 180° phase rotation, culminating in a complete 720° cycle that aligns with a return to the original overwintering site in Mexico.</p> <p>The work further explores a symbolic correspondence between internal quark spin dynamics and externally expressed lepton states, suggesting that metamorphosis (e.g., the chrysalis phase) acts as a Zeno-like suspension in which phase coherence is preserved but temporarily unobservable. The paper concludes by proposing that monarch navigation may reflect a deeper field-based geometric resonance — a biological echo of quantum spinor projection memory.</p> <p>This contribution is intended to open new interdisciplinary dialogue between quantum physics, developmental biology, and theoretical ecology.</p>
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spellingShingle Monarch Spinor Cycle: A 720-Degree Generational Resonance in Danaus plexippus
Cabrera Vera, Kittim Lorena
monarch butterflies
spinor symmetry
quantum biology
generqtional memory
metamorphosis
SU(2)
zeno effect
<p>This paper proposes a novel theoretical model linking the four-generation migratory cycle of the monarch butterfly (Danaus plexippus) to the 720-degree rotational symmetry of spin-½ particles in quantum mechanics. Drawing on the SU(2) spinor structure, the study maps each monarch generation to a 180° phase rotation, culminating in a complete 720° cycle that aligns with a return to the original overwintering site in Mexico.</p> <p>The work further explores a symbolic correspondence between internal quark spin dynamics and externally expressed lepton states, suggesting that metamorphosis (e.g., the chrysalis phase) acts as a Zeno-like suspension in which phase coherence is preserved but temporarily unobservable. The paper concludes by proposing that monarch navigation may reflect a deeper field-based geometric resonance — a biological echo of quantum spinor projection memory.</p> <p>This contribution is intended to open new interdisciplinary dialogue between quantum physics, developmental biology, and theoretical ecology.</p>
title Monarch Spinor Cycle: A 720-Degree Generational Resonance in Danaus plexippus
topic monarch butterflies
spinor symmetry
quantum biology
generqtional memory
metamorphosis
SU(2)
zeno effect
url https://doi.org/10.5281/zenodo.15777463