Relativistic Harmonic Oscillator Revisited
arXiv:0810.2075 · doi:10.1103/PhysRevD.79.045009
Abstract
The familiar Fock space commonly used to describe the relativistic harmonic oscillator, for example as part of string theory, is insufficient to describe all the states of the relativistic oscillator. We find that there are three different vacua leading to three disconnected Fock sectors, all constructed with the same creation-annihilation operators. These have different spacetime geometric properties as well as different algebraic symmetry properties or different quantum numbers. Two of these Fock spaces include negative norm ghosts (as in string theory) while the third one is completely free of ghosts. We discuss a gauge symmetry in a worldline theory approach that supplies appropriate constraints to remove all the ghosts from all Fock sectors of the single oscillator. The resulting ghost free quantum spectrum in d+1 dimensions is then classified in unitary representations of the Lorentz group SO(d,1). Moreover all states of the single oscillator put together make up a single infinite dimensional unitary representation of a hidden global symmetry SU(d,1), whose Casimir eigenvalues are computed. Possible applications of these new results in string theory and other areas of physics and mathematics are briefly mentioned.
41 pages, 2 figures, LaTeX
References in corpus (3)
Cited by in corpus (18)
- Transformations between Jordan and Einstein frames: Bounces, antigravity, and crossing singularities
- Geodesically Complete Analytic Solutions for a Cyclic Universe
- The relativistic massless harmonic oscillator
- Complete Set of Homogeneous Isotropic Analytic Solutions in Scalar-Tensor Cosmology with Radiation and Curvature
- Physical Interpretation of Antigravity
- Poincaré Symmetry from Heisenberg's Uncertainty Relations
- Generalized Dualities in 1T-Physics as Holographic Predictions from 2T-Physics
- Group Theoretical Approach to Pseudo-Hermitian Quantum Mechanics with Lorentz Covariance and Limit
- On the relation between boundary proposals and hidden symmetries of the extended pre-big bang quantum cosmology
- Analysis on Complete Set of Fock States with Explicit Wavefunctions for the Covariant Harmonic Oscillator Problem
- Wavefunction for the Universe Circa the Beginning with Dynamically Determined Unique Initial Conditions
- Harmonic Oscillator States with Non-Integer Orbital Angular Momentum
- Novel Complete Non-compact Symmetries for the Wheeler-DeWitt Equation in a Wormhole Scalar Model and Axion-Dilaton String Cosmology
- Supersymmetric Klein-Gordon and Dirac oscillators
- Born Reciprocity and Cosmic Accelerations
- Nonrelativistic quantum particles on the Minkowski plane
- A Cosmology of a Trans-Planckian Theory and Dark Energy
- Covariant Quantum Mechanics and Quantum Spacetime