Enhanced Quantum Procedures that Resolve Difficult Problems
John R. Klauder

TL;DR
This paper introduces enhanced quantum procedures leveraging coherent states and affine quantization, addressing complex problems like quantum gravity and scalar field theories, and providing solutions where traditional methods fail.
Contribution
The paper develops new quantum techniques that resolve classical singularities and trivialities, offering a broader framework applicable to quantum gravity and field theories.
Findings
Invariant quantum formulation under canonical transformations
Removal of classical singularities via quantum corrections
Proper solutions for classically trivial models using enhanced procedures
Abstract
A careful study of the classical/quantum connection with the aid of coherent states offers new insights into various technical problems. This analysis includes both canonical as well as closely related affine quantization procedures. The new tools are applied to several examples including: (1) A quantum formulation that is invariant under arbitrary classical canonical transformations of coordinates; (2) A toy model that for all positive energy solutions has singularities which are removed at the classical level when the correct quantum corrections are applied; (3) A fairly simple model field theory with nontrivial classical behavior that, when conventionally quantized, becomes trivial, but nevertheless finds a proper solution using the enhanced procedures; (4) A model of scalar field theories with nontrivial classical behavior that, when conventionally quantized, becomes…
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