Direct experimental test of commutation relation via imaginary weak value

The canonical commutation relation is the hallmark of quantum theory, and Heisenberg's uncertainty relation is a direct consequence of it. Although various formulations of uncertainty relations have been tested in experiments a direct test of the commutation relation has hitherto not been perfo...

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Main Authors: Richard Wagner, Wenzel Kersten, Armin Danner, Hartmut Lemmel, Alok Kumar Pan, Stephan Sponar
Format: Article
Language:English
Published: American Physical Society 2021-06-01
Series:Physical Review Research
Online Access:http://doi.org/10.1103/PhysRevResearch.3.023243
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author Richard Wagner
Wenzel Kersten
Armin Danner
Hartmut Lemmel
Alok Kumar Pan
Stephan Sponar
author_facet Richard Wagner
Wenzel Kersten
Armin Danner
Hartmut Lemmel
Alok Kumar Pan
Stephan Sponar
author_sort Richard Wagner
collection DOAJ
description The canonical commutation relation is the hallmark of quantum theory, and Heisenberg's uncertainty relation is a direct consequence of it. Although various formulations of uncertainty relations have been tested in experiments a direct test of the commutation relation has hitherto not been performed. The reason for this is that whereas in quantum mechanics, observables are usually represented by Hermitian operators, the product of two noncommuting observables as occurring in the commutator relation is, in general, non-Hermitian. Here, we present a theoretical scheme for a direct test of the commutation relation and report its experimental realization. More precisely, we provide an experimental verification of the canonical commutation relation between two qubit observables based on a measurement scheme widely known as “weak measurement.” In our neutron interferometric setup, we perform the measurement of a single anomalous weak value of a relevant path-qubit observable where the coupled spin-energy degree of freedom serves as an ancilla.
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spelling doaj.art-03cff91f33ed456983f7c526c7eb4b5c2024-04-12T17:11:07ZengAmerican Physical SocietyPhysical Review Research2643-15642021-06-013202324310.1103/PhysRevResearch.3.023243Direct experimental test of commutation relation via imaginary weak valueRichard WagnerWenzel KerstenArmin DannerHartmut LemmelAlok Kumar PanStephan SponarThe canonical commutation relation is the hallmark of quantum theory, and Heisenberg's uncertainty relation is a direct consequence of it. Although various formulations of uncertainty relations have been tested in experiments a direct test of the commutation relation has hitherto not been performed. The reason for this is that whereas in quantum mechanics, observables are usually represented by Hermitian operators, the product of two noncommuting observables as occurring in the commutator relation is, in general, non-Hermitian. Here, we present a theoretical scheme for a direct test of the commutation relation and report its experimental realization. More precisely, we provide an experimental verification of the canonical commutation relation between two qubit observables based on a measurement scheme widely known as “weak measurement.” In our neutron interferometric setup, we perform the measurement of a single anomalous weak value of a relevant path-qubit observable where the coupled spin-energy degree of freedom serves as an ancilla.http://doi.org/10.1103/PhysRevResearch.3.023243
spellingShingle Richard Wagner
Wenzel Kersten
Armin Danner
Hartmut Lemmel
Alok Kumar Pan
Stephan Sponar
Direct experimental test of commutation relation via imaginary weak value
Physical Review Research
title Direct experimental test of commutation relation via imaginary weak value
title_full Direct experimental test of commutation relation via imaginary weak value
title_fullStr Direct experimental test of commutation relation via imaginary weak value
title_full_unstemmed Direct experimental test of commutation relation via imaginary weak value
title_short Direct experimental test of commutation relation via imaginary weak value
title_sort direct experimental test of commutation relation via imaginary weak value
url http://doi.org/10.1103/PhysRevResearch.3.023243
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