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Arrabal-Schrödinger Transition Equation: A Velocity-Based Approach to the Quantum-to-Classical Crossover

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DataCite Commons2024-10-24 更新2025-04-15 收录
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https://dataverse.harvard.edu/citation?persistentId=doi:10.7910/DVN/TOF3TC
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Abstract: This thesis introduces the Arrabal-Schrödinger Transition Equation, a novel mathematical framework that integrates velocity as a key parameter influencing quantum decoherence and the quantum-to-classical transition. Building upon the traditional Schrödinger equation and incorporating Arrabal’s critical velocity criterion, the research provides a velocity-dependent decoherence mechanism. At a defined critical velocity vcriticalv_{\text{critical}}vcritical, quantum coherence collapses, facilitating the emergence of classical behavior. This model is designed to account for real-world physical systems, such as high-velocity particles and cosmological scenarios. The framework offers new insights into the limits of quantum behavior, particularly in quantum computing and cosmological structure formation
提供机构:
Harvard Dataverse
创建时间:
2024-09-13
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