What meter interference can tell us about the statistics of weak measurements
Abstract
It is widely assumed that the quantum fluctuations of the meter readout in a weak measurement make it impossible to identify the contributions originating from the individual values of the physical property observed in the measurement. Here, we show that a careful analysis of the quantum dynamics of the meter system allows us to identify a universal relation between quantum interference in the post-selection probability, and quantum interference in the statistics of the meter readout. The analysis reveals that quantum interference modifies the readout distribution of the meter in two ways, a diffusion term that identifies the appropriate operator ordering in the post-selected variance of the observed system property, and a wavefunction-dependent update of the initial meter statistics based on the effect of back action on the post-selection probability. Our results show that the statistical patterns described by meter interference provide important details about the physics of post-selection in weak measurements, allowing us to exclude the possibility of statistical artefacts in the experimental observation of weak values.
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Cite
@article{arxiv.2608.05494,
title = {What meter interference can tell us about the statistics of weak measurements},
author = {Holger F. Hofmann and Tomonori Matsushita and Masayoshi Isobe and Jonte R. Hance},
journal= {arXiv preprint arXiv:2608.05494},
year = {2026}
}
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13 pages