Projection postulate and atomic quantum Zeno effect
- 1 January 1996
- journal article
- Published by American Physical Society (APS) in Physical Review A
- Vol. 53 (1), 53-65
- https://doi.org/10.1103/physreva.53.53
Abstract
The projection postulate has been used to predict a slow-down of the time evolution of the state of a system under rapidly repeated measurements, and ultimately a freezing of the state. To test this so-called quantum Zeno effect an experiment was performed by Itano et al. (Phys. Rev. A 41, 2295 (1990)) in which an atomic-level measurement was realized by means of a short laser pulse. The relevance of the results has given rise to controversies in the literature. In particular the projection postulate and its applicability in this experiment have been cast into doubt. In this paper we show analytically that for a wide range of parameters such a short laser pulse acts as an effective level measurement to which the usual projection postulate applies with high accuracy. The corrections to the ideal reductions and their accumulation over n pulses are calculated. Our conclusion is that the projection postulate is an excellent pragmatic tool for a quick and simple understanding of the slow-down of time evolution in experiments of this type. However, corrections have to be included, and an actual freezing does not seem possible because of the finite duration of measurements.Comment: 25 pages, LaTeX, no figures; to appear in Phys. Rev.Keywords
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This publication has 49 references indexed in Scilit:
- Dark periods in the resonance fluorescence of a single ? systemZeitschrift für Physik B Condensed Matter, 1995
- Characteristic scales for dominated time evolutionPhysica Scripta, 1994
- Quantum Zeno effect in a double-well potential: A model of a physical measurementPhysical Review A, 1994
- Quantum Zeno effect without collapse of the wave packetPhysical Review A, 1991
- Comment on ‘‘Quantum Zeno effect’’Physical Review A, 1991
- Limitations of the projection postulateFoundations of Physics, 1990
- Static properties of a non-neutral-ion plasmaPhysical Review A, 1988
- The time scale for the quantum zeno paradox and proton decayPhysics Letters B, 1982
- Two state systems in media and “Turing's paradox”Physics Letters B, 1982
- Double-resonance and optical-pumping experiments on electromagnetically confined, laser-cooled ionsOptics Letters, 1980