Spin of Photons: Nature of Polarisation
arXiv:2303.17112 · doi:10.3389/fphy.2023.1225334
Abstract
Stokes parameters () in Poincaré sphere are very useful values to describe the polarisation state of photons. However, the fundamental principle of the nature of polarisation is not completely understood, yet, because we have no concrete consensus how to describe spin of photons, quantum-mechanically. Here, we have considered a monochromatic coherent ray of photons, described by a many-body coherent state, and tried to establish a fundamental basis to describe the spin state of photons, in connection with a classical description based on Stokes parameters. We show that a spinor description of the coherent state is equivalent to Jones vector for polarisation states, and obtain the spin operators () of all components based on rotators in a group theory. Polarisation controllers such as phase-shifters and rotators are also obtained as quantum-mechanical operators to change the phase of the wavefunction for polarisation states. We show that the Stokes parameters are quantum-mechanical average of the obtained spin operators, .
References in corpus (14)
- Generation of tunable optical skyrmions on Skyrme-Poincaré sphere
- Spin and orbital angular momentum in gauge theories: Nucleon spin structure and multipole radiation revisited
- Reply to the Comment on "Spin and orbital angular momentum in gauge theories: Nucleon spin structure and multipole radiation revisited" [PRL 100:232002 (2008)]
- Nonseparable states of light: From quantum to classical
- Topological Transformation and Free-Space Transport of Photonic Hopfions
- Quantum and classical separability of spin-orbit laser modes
- Quantum degrees of polarization
- Spin and Orbital Angular Momentum of Coherent Photons in a Waveguide
- Special Theory of Relativity for a Graded Index Fibre
- Quantum Commutation Relationship for Photonic Orbital Angular Momentum
- SU(2) Symmetry of Coherent Photons and Application to Poincaré Rotator
- The Jones vector as a spinor and its representation on the Poincaré sphere
- Topological Polarisation States
- Photonic Quantum Chromo-Dynamics