An alternative Hamiltonian formulation for the Pais-Uhlenbeck oscillator
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Publication:253033
DOI10.1016/j.nuclphysb.2015.11.011zbMath1332.81059arXiv1505.02583OpenAlexW1832054683MaRDI QIDQ253033
Publication date: 7 March 2016
Published in: Nuclear Physics. B (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/1505.02583
Selfadjoint operator theory in quantum theory, including spectral analysis (81Q10) Supersymmetry and quantum mechanics (81Q60) Higher-order theories for problems in Hamiltonian and Lagrangian mechanics (70H50)
Related Items (18)
Stability in the higher derivative abelian gauge field theories ⋮ Ricci-flat spacetimes with \(l\)-conformal Galilei symmetry ⋮ The odd-order Pais-Uhlenbeck oscillator ⋮ Formulation of Euler-Lagrange and Hamilton equations involving fractional operators with regular kernel ⋮ \(\mathcal{N} = 2\) supersymmetric odd-order Pais-Uhlenbeck oscillator ⋮ \(l\)-conformal Newton-Hooke symmetry of the damped Pais-Uhlenbeck oscillator ⋮ Third order extensions of 3d Chern-Simons interacting to gravity: Hamiltonian formalism and stability ⋮ A perturbation theory approach to the stability of the Pais-Uhlenbeck oscillator ⋮ Boost invariant regulator for field theories ⋮ Reductions of topologically massive gravity II. First order realizations of second order Lagrangians ⋮ On the geometry of the Schmidt-Legendre transformation ⋮ BRST deformations and stability in the higher derivative Chern–Simons gauge theory ⋮ Entanglement of higher-derivative oscillators in holographic systems ⋮ On the equivalence of two approaches to the construction of interactions in higher-derivative theories ⋮ Remark on higher-derivative mechanics with l-conformal Galilei symmetry ⋮ Pais–Uhlenbeck oscillator and negative energies ⋮ Conservation laws and stability of field theories of derived type ⋮ Reductions of topologically massive gravity I: Hamiltonian analysis of second order degenerate Lagrangians
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