Quantum Resource Theory for Charge-Parity-Time Inversion
arXiv:1405.2516 · doi:10.1103/PhysRevA.90.012326
Abstract
We develop a complete resource theory of charge-parity-time (CPT) inversion symmetry for both massive and massless relativistic particles of arbitrary spin. We show that a unitary representation of CPT can be consistently constructed for all spins and develop the resource theory associated with CPT super-selection, thereby identifying and quantifying the resources required to lift the super-selection rule.
Published version
References in corpus (8)
- Reference frames, superselection rules, and quantum information
- The resource theory of quantum reference frames: manipulations and monotones
- Photon wave functions, wave-packet quantization of light, and coherence theory
- Classical and quantum communication without a shared reference frame
- Efficient Quantum Circuits for Schur and Clebsch-Gordan Transforms
- Photon-number superselection and the entangled coherent-state representation
- Quantum gloves: Physics and Information
- Time-reversal frameness and superselection