In a quantum Bianchi type-I cosmology, the conditional probability density for zero volume vanishes for all clock times, resolving the classical singularity via Page-Wootters relational dynamics.
Time and interpretations of quantum gravity
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Clock time is reconstructed from the accumulated Fisher distinguishability along causally ordered physical changes, rather than being a fundamental quantity measured by clocks.
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Singularity Resolution in Quantum Cosmology via Page-Wootters Formalism
In a quantum Bianchi type-I cosmology, the conditional probability density for zero volume vanishes for all clock times, resolving the classical singularity via Page-Wootters relational dynamics.
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Fisher-Informational Time: A Causal-Geometric Framework for Emergent Clock Time Physical Distinguishability
Clock time is reconstructed from the accumulated Fisher distinguishability along causally ordered physical changes, rather than being a fundamental quantity measured by clocks.