Quantum Mechanical Effects from Deformation Theory
arXiv:1307.2609 · doi:10.1063/1.4865459
Abstract
We consider deformations of quantum mechanical operators by using the novel construction of warped convolutions. The deformation enables us to obtain several quantum mechanical effects where electromagnetic and gravitomagnetic fields play a role. Furthermore, a quantum plane can be defined by using the deformation techniques. This in turn gives an experimentally verifiable effect.
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Cited by in corpus (10)
- Operator Deformations in Quantum Measurement Theory
- Non-commutative Geometry from Perturbative Quantum Gravity in de Sitter spacetime
- Index pairings for -actions and Rieffel deformations
- Self-Adjointness of Deformed Unbounded Operators
- Learning a Deep Model for Human Action Recognition from Novel Viewpoints
- Preconjugate variables in quantum field theory and their use
- Electromagnetism in terms of quantum measurements
- Strict deformations of quantum field theory in de Sitter spacetime
- Relativistic Corrections to the Moyal-Weyl Spacetime
- Curving Flat Space-Time by Deformation Quantization?