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Experimental study of quantum uncertainty from lack of information

Physics

Experimental study of quantum uncertainty from lack of information

Y. Zhao, F. Rozpędek, et al.

Explore the intriguing origins of quantum uncertainty through innovative two- and three-dimensional guessing games in this research conducted by Yuan-Yuan Zhao, Filip Rozpędek, Zhibo Hou, Kang-Da Wu, Guo-Yong Xiang, Chuan-Feng Li, and Guang-Can Guo. Discover how quantum information's inaccessibility impacts uncertainty and learn about a new method for constructing high-dimensional Fourier gates.

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~3 min • Beginner • English
Abstract
Quantum uncertainty is a well-known property of quantum mechanics that states the impossibility of predicting measurement outcomes of multiple incompatible observables simultaneously. In contrast, the uncertainty in the classical domain comes from the lack of information about the exact state of the system. One may naturally ask, whether the quantum uncertainty is indeed a fully intrinsic property of the quantum theory, or whether similar to the classical domain lack of knowledge about specific parts of the physical system might be the source of this uncertainty. This question has been addressed in the previous literature where the authors argue that in the entropic formulation of the uncertainty principle that can be illustrated using the so-called, guessing games, indeed such lack of information has a significant contribution to the arising quantum uncertainty. Here we investigate this issue experimentally by implementing the corresponding two-dimensional and three-dimensional guessing games. Our results confirm that within the guessing-game framework, the quantum uncertainty to a large extent relies on the fact that quantum information determining the key properties of the game is stored in the degrees of freedom that remain inaccessible to the guessing party. Moreover, we offer an experimentally compact method to construct the high-dimensional Fourier gate which is a major building block for various tasks in quantum computation, quantum communication, and quantum metrology.
Publisher
npj Quantum Information
Published On
Jun 02, 2022
Authors
Yuan-Yuan Zhao, Filip Rozpędek, Zhibo Hou, Kang-Da Wu, Guo-Yong Xiang, Chuan-Feng Li, Guang-Can Guo
Tags
quantum uncertainty
guessing games
quantum information
high-dimensional Fourier gates
experimental investigation
information theory
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