Quantum holography introduces a novel theoretical framework to international relations by establishing that sovereign states function simultaneously as individual parts and reflections of the broader global whole. Drawing on David Bohm’s 1980 quantum physics and Alexander Wendt’s 2015 social ontology, this paradigm challenges classical Newtonian and Hobbesian models of isolated states operating in systemic anarchy.
By replacing billiard-ball state interaction models with Bohmian implicate and explicate orders, the theory grounds macro-level geopolitical dynamics within micro-level domestic practices. Classical atomistic assumptions fail. Chengxin Pan applies this ontology to China’s re-emergence, framing Beijing’s rise as a holographic transition driven by the mutual absorption and transformation of global economic and normative systems. Consequently, complex transnational challenges—spanning climate disruptions, pandemic responses, and ongoing wars in Ukraine and the Middle East—require multilateral cooperation rather than populist economic decoupling or border closures derived from classical state separation assumptions.
Applying holistic part-whole models to security frameworks exposes the conceptual limits of traditional regional containment doctrines. Conventional deterrence models treat alliance signatories as isolated security consumers rather than interconnected vectors of broader systemic risk. In NATO's Strategic Concept 2022, signatory nations acknowledge that non-linear disruptions in distant theatres directly alter internal alliance cohesion. This friction demonstrates that local defence postures cannot remain insulated from wider geopolitical instabilities.
This structural entanglement operates through shared intelligence feeds and interconnected command architectures. Within the NATO Integrated Air and Missile Defence system, an air defence battery deployed in Poland operates not as a self-contained unit, but as a node in an alliance-wide sensor network. Tactical disruptions at Ramstein Air Base or along the Suwalki Gap immediately alter the operational parameters of the entire integrated system.
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