Physical Review Research (Apr 2020)

Direct experimental test of forward and reverse uncertainty relations

  • Lei Xiao,
  • Bowen Fan,
  • Kunkun Wang,
  • Arun Kumar Pati,
  • Peng Xue

DOI
https://doi.org/10.1103/PhysRevResearch.2.023106
Journal volume & issue
Vol. 2, no. 2
p. 023106

Abstract

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The canonical Robertson-Schrödinger uncertainty relation provides a loose bound for the product of variances of two noncommuting observables. Recently, several tight forward and reverse uncertainty relations have been proved which go beyond the traditional uncertainty relations. Here we experimentally test multifold of state-dependent uncertainty relations for the product as well as the sum of variances of two incompatible observables for photonic qutrits. These uncertainty relations are independent of any optimization and still tighter than the Robertson-Schrödinger uncertainty relation and other ones found in current literatures. For the first time, we also test the state-dependent reverse uncertainty relations for the sum of variances of two incompatible observables, which implies another unique feature of preparation uncertainty in quantum mechanics. Our experimental results not only foster insight into a fundamental limitation on preparation uncertainty, but also may contribute to the study of the upper limit of precession measurements for incompatible observables.