English

PT symmetry as a necessary and sufficient condition for unitary time evolution

High Energy Physics - Theory 2012-11-27 v3

Abstract

While Hermiticity of a time-independent Hamiltonian leads to unitary time evolution, in and of itself, the requirement of Hermiticity is only sufficient for unitary time evolution. In this paper we provide conditions that are both necessary and sufficient. We show that PTPT symmetry of a time-independent Hamiltonian, or equivalently, reality of the secular equation that determines its eigenvalues, is both necessary and sufficient for unitary time evolution. For any PTPT-symmetric Hamiltonian HH there always exists an operator VV that relates HH to its Hermitian adjoint according to VHV1=HVHV^{-1}=H^{\dagger}. When the energy spectrum of HH is complete, Hilbert space norms <ψ1Vψ2><\psi_1|V|\psi_2> constructed with this VV are always preserved in time. With the energy eigenvalues of a real secular equation being either real or appearing in complex conjugate pairs, we thus establish the unitarity of time evolution in both cases. We also establish the unitarity of time evolution for Hamiltonians whose energy spectra are not complete. We show that when the energy eigenvalues of a Hamiltonian are real and complete the operator VV is a positive Hermitian operator, which has an associated square root operator that can be used to bring the Hamiltonian to a Hermitian form. We show that systems with PTPT-symmetric Hamiltonians obey causality. We note that Hermitian theories are ordinarily associated with a path integral quantization prescription in which the path integral measure is real, while in contrast non-Hermitian but PTPT-symmetric theories are ordinarily associated with path integrals in which the measure needs to be complex, but in which the Euclidean time continuation of the path integral is nonetheless real. We show that through PTPT symmetry the fourth-order derivative Pais-Uhlenbeck theory can be stabilized against transitions to states negative frequency.

Keywords

Cite

@article{arxiv.0912.2635,
  title  = {PT symmetry as a necessary and sufficient condition for unitary time evolution},
  author = {Philip D. Mannheim},
  journal= {arXiv preprint arXiv:0912.2635},
  year   = {2012}
}

Comments

Latex, 34 pages. Extended and updated final version. To appear in a theme issue of Philosophical Transactions A of the Royal Society on PT quantum mechanics