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Universal Mathematics & Collapse Platform (UMCP): Empirical Calibration via Hawking-Analog Polariton Fluids

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Zenodo2025-07-30 更新2026-05-26 收录
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We formalize the empirical calibration of the Universal Mathematics & Collapse Platform (UMCP) using experimental data from polariton quantum fluids engineered to simulate the Hawking effect. All key measured variables, regime boundaries, and field invariants are mapped to UMCP diagnostic logic, providing a reference benchmark for cross-domain deployment. The protocol includes extracted equations, thresholds, and operational steps for regime assignment, invariant detection, and collapse boundary calibration. This work demonstrates how recent advances in analog gravity experiments can anchor and validate universal collapse diagnostics, expanding UMCP’s empirical foundation for both quantum and classical systems.

我们针对通用数学与坍缩平台(Universal Mathematics & Collapse Platform, UMCP),采用经工程化设计以模拟霍金效应的极化子量子流体实验数据,完成其经验校准的形式化建模。所有核心测量变量、运行区域边界与场不变量均映射至UMCP诊断逻辑,可为跨域部署提供参考基准。该协议涵盖了用于区域划分、不变量检测以及坍缩边界校准的提取方程、阈值与操作流程。本研究证实,近期类比引力实验的进展可用于锚定并验证通用坍缩诊断方法,进而拓展UMCP在量子与经典系统中的实证基础。

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2025-07-30
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