Variable-strength nonlocal measurements reveal quantum violations of classical counting principles

N Noah Lupu-Gladstein (Department of Physics and Center for Quantum Information and Quantum Control) O Ou Teen Arthur Pang (Department of Physics and Center for Quantum Information and Quantum Control) H Hugo Ferretti (Department of Physics and Center for Quantum Information and Quantum Control) W Weng-Kian Tham (Department of Physics and Center for Quantum Information and Quantum Control) A Aephraim M. Steinberg (Department of Physics and Center for Quantum Information and Quantum Control) K Kent Bonsma-Fisher (Department of Physics and Center for Quantum Information and Quantum Control) A Aharon Brodutch (Department of Physics and Center for Quantum Information and Quantum Control)

Abstract

We implement a variant of the quantum pigeonhole paradox thought experiment to study whether classical counting principles survive in the quantum domain. We observe strong measurements significantly violate the pigeonhole principle (that among three pigeons in two holes, at least one pair must be in the same hole) and the sum rule (that the number of pigeon pairs in the same hole is the sum of the number of pairs across each of the holes) in an ensemble that is pre- and postselected into particular separable states. To investigate whether measurement disturbance is a viable explanation for these counterintuitive phenomena, we employ a we employ variable-strength nonlocal measurements. As we decrease the measurement strength, we find the violation of the sum rule decreases, yet the pigeonhole principle remains violated. In the weak limit, the sum rule is restored due to the cancellation between two weak values with equal and opposite imaginary parts. We observe the same kind of cancellation at higher measurement strengths, thus raising the question: do strong measurements have imaginary parts?

Article Details

Volume / Issue Vol. 122, Issue 7
Published February 18, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (7)

N

Noah Lupu-Gladstein

Department of Physics and Center for Quantum Information and Quantum Control

O

Ou Teen Arthur Pang

Department of Physics and Center for Quantum Information and Quantum Control

H

Hugo Ferretti

Department of Physics and Center for Quantum Information and Quantum Control

W

Weng-Kian Tham

Department of Physics and Center for Quantum Information and Quantum Control

A

Aephraim M. Steinberg

Department of Physics and Center for Quantum Information and Quantum Control

K

Kent Bonsma-Fisher

Department of Physics and Center for Quantum Information and Quantum Control

A

Aharon Brodutch

Department of Physics and Center for Quantum Information and Quantum Control