
Quantum mechanics, while extraordinarily successful in predicting experimental outcomes, faces foundational issues such as the measurement problem and the probabilistic interpretation of wave function collapse. This paper proposes a minimal extension model based on the existence density field and an unfolded output, incorporating a micro-extension factor. The model aims to remain consistent with current quantum theory while naturally addressing wave function collapse and probabilistic behavior.
Quantum Measurement Problem, Wave Function Collapse, Probabilistic Interpretation, Minimal Extension, Existential Field, Quantum Fluctuations, Quantum Theory Consistency
Quantum Measurement Problem, Wave Function Collapse, Probabilistic Interpretation, Minimal Extension, Existential Field, Quantum Fluctuations, Quantum Theory Consistency
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