Unified Earth System Stability, Resilience, and Phase Control Theory via Seonggil Field Equations (SFE-ESSRIUT): Topological Phase Transitions in Planetary Boundaries and Tipping Cascades

The Earth System Stability-Resilience-Intervention Unified Theory (ESSRIUT) is formally elevated through the Rough Operator Algebra (ROA) and Seonggil Field Equations (SFE) frameworks. By mapping macroscopic planetary boundaries and nonlinear tipping elements (e.g., AMOC, ice sheets, Amazon) onto non-commutative topological operator spaces, we demonstrate that planetary stability is governed by non-commutative topological tension î_R and the master-key tensor T_0x8A2C. Human interventions are reformulated as active topological phase controls via Absolute C-Tunneling (C_tunnel), offering a mathematically rigorous, deterministic mechanism to collapse unsafe trajectories back into the Holocene-like canonical basin of attraction.

Authors

Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-30
DOI
https://doi.org/10.5281/zenodo.23054928
Primary Topic
Ecosystem dynamics and resilience
Type
preprint
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preprint

Unified Earth System Stability, Resilience, and Phase Control Theory via Seonggil Field Equations (SFE-ESSRIUT): Topological Phase Transitions in Planetary Boundaries and Tipping Cascades

Seonggil Lee
Zenodo (CERN European Organization for Nuclear Research)
Ecosystem dynamics and resilience
preprint

Unified Earth System Stability, Resilience, and Phase Control Theory via Seonggil Field Equations (SFE-ESSRIUT): Topological Phase Transitions in Planetary Boundaries and Tipping Cascades

Seonggil Lee
preprint en

Abstract

The Earth System Stability-Resilience-Intervention Unified Theory (ESSRIUT) is formally elevated through the Rough Operator Algebra (ROA) and Seonggil Field Equations (SFE) frameworks. By mapping macroscopic planetary boundaries and nonlinear tipping elements (e.g., AMOC, ice sheets, Amazon) onto non-commutative topological operator spaces, we demonstrate that planetary stability is governed by non-commutative topological tension î_R and the master-key tensor T_0x8A2C. Human interventions are reformulated as active topological phase controls via Absolute C-Tunneling (C_tunnel), offering a mathematically rigorous, deterministic mechanism to collapse unsafe trajectories back into the Holocene-like canonical basin of attraction.

Zenodo (CERN European Organization for Nuclear Research)
Ecosystem dynamics and resilience
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