English

Quantum evolution in the stroboscopic limit of repeated measurements

Quantum Physics 2017-02-14 v2

Abstract

We consider a quantum system dynamics caused by successive selective and non-selective measurements of the probe coupled to the system. For the finite measurement rate τ1\tau^{-1} and the system-probe interaction strength γ\gamma we derive analytical evolution equations in the stroboscopic limit τ0\tau \rightarrow 0 and γ2τ=const\gamma^2 \tau = {\rm const}, which can be considered as a deviation from the Zeno subspace dynamics on a longer timescale T(γ2τ)1γ1T \sim (\gamma^2 \tau)^{-1} \gg \gamma^{-1}. Non-linear quantum dynamics is analyzed for selective stroboscopic projective measurements of an arbitrary rank. Non-selective measurements are shown to induce the semigroup dynamics of the system-probe aggregate. Both non-linear and decoherent effects become significant at the timescale T(γ2τ)1T \sim (\gamma^2 \tau)^{-1}, which is illustrated by a number of examples.

Keywords

Cite

@article{arxiv.1609.05501,
  title  = {Quantum evolution in the stroboscopic limit of repeated measurements},
  author = {I. A. Luchnikov and S. N. Filippov},
  journal= {arXiv preprint arXiv:1609.05501},
  year   = {2017}
}

Comments

9 pages, 7 figures, published version

R2 v1 2026-06-22T15:53:25.936Z