An optimal measurement strategy to beat the quantum uncertainty in
correlated system
- URL: http://arxiv.org/abs/2002.09833v2
- Date: Sun, 27 Sep 2020 03:38:17 GMT
- Title: An optimal measurement strategy to beat the quantum uncertainty in
correlated system
- Authors: Jun-Li Li, Cong-Feng Qiao
- Abstract summary: Uncertainty principle undermines the precise measurement of incompatible observables.
Entanglement, another unique feature of quantum physics, was found may help to reduce the quantum uncertainty.
- Score: 0.6091702876917281
- License: http://arxiv.org/licenses/nonexclusive-distrib/1.0/
- Abstract: Uncertainty principle is an inherent nature of quantum system that undermines
the precise measurement of incompatible observables and hence the applications
of quantum theory. Entanglement, another unique feature of quantum physics, was
found may help to reduce the quantum uncertainty. In this paper, we propose a
practical method to reduce the one party measurement uncertainty by determining
the measurement on the other party of an entangled bipartite system. In light
of this method, a family of conditional majorization uncertainty relations in
the presence of quantum memory is constructed, which is applicable to arbitrary
number of observables. The new family of uncertainty relations implies
sophisticated structures of quantum uncertainty and nonlocality, that were
usually studied by using scalar measures. Applications to reduce the local
uncertainty and to witness quantum nonlocalities are also presented.
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