English

Multidimensional entropic uncertainty relation based on a commutator matrix in position and momentum spaces

Quantum Physics 2018-01-17 v2

Abstract

The uncertainty relation for continuous variables due to Byalinicki-Birula and Mycielski expresses the complementarity between two nn-uples of canonically conjugate variables (x1,x2,xn)(x_1,x_2,\cdots x_n) and (p1,p2,pn)(p_1,p_2,\cdots p_n) in terms of Shannon differential entropy. Here, we consider the generalization to variables that are not canonically conjugate and derive an entropic uncertainty relation expressing the balance between any two nn-variable Gaussian projective measurements. The bound on entropies is expressed in terms of the determinant of a matrix of commutators between the measured variables. This uncertainty relation also captures the complementarity between any two incompatible linear canonical transforms, the bound being written in terms of the corresponding symplectic matrices in phase space. Finally, we extend this uncertainty relation to R\'enyi entropies and also prove a covariance-based uncertainty relation which generalizes Robertson relation.

Keywords

Cite

@article{arxiv.1711.04566,
  title  = {Multidimensional entropic uncertainty relation based on a commutator matrix in position and momentum spaces},
  author = {Anaelle Hertz and Luc Vanbever and Nicolas J. Cerf},
  journal= {arXiv preprint arXiv:1711.04566},
  year   = {2018}
}

Comments

8 pages, 1 figure

R2 v1 2026-06-22T22:44:07.751Z