Quantum weak values and the 'which way?' question

Fuente: arXiv
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Autori principali: Uranga, A., Akhmatskaya, E., Sokolovski, D.
Natura: Preprint
Pubblicazione: 2024
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author Uranga, A.
Akhmatskaya, E.
Sokolovski, D.
author_facet Uranga, A.
Akhmatskaya, E.
Sokolovski, D.
contents Uncertainty principle forbids one to determine which of the two paths a quantum system has travelled, unless interference between the alternatives had been destroyed by a measuring device, e.g., by a pointer. One can try to weaken the coupling between the device and the system, in order to avoid the veto. We demonstrate, however, that a weak pointer is at the same time an inaccurate one, and the information about the path taken by the system in each individual trial is inevitably lost. We show also that a similar problem occurs if a classical system is monitored by an inaccurate quantum meter. In both cases one can still determine some characteristic of the corresponding statistical ensemble, a relation between path probabilities in the classical case, and a relation between the probability amplitudes if a quantum system is involved.
format Preprint
id arxiv_https___arxiv_org_abs_2407_10360
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Quantum weak values and the 'which way?' question
Uranga, A.
Akhmatskaya, E.
Sokolovski, D.
Quantum Physics
Uncertainty principle forbids one to determine which of the two paths a quantum system has travelled, unless interference between the alternatives had been destroyed by a measuring device, e.g., by a pointer. One can try to weaken the coupling between the device and the system, in order to avoid the veto. We demonstrate, however, that a weak pointer is at the same time an inaccurate one, and the information about the path taken by the system in each individual trial is inevitably lost. We show also that a similar problem occurs if a classical system is monitored by an inaccurate quantum meter. In both cases one can still determine some characteristic of the corresponding statistical ensemble, a relation between path probabilities in the classical case, and a relation between the probability amplitudes if a quantum system is involved.
title Quantum weak values and the 'which way?' question
topic Quantum Physics
url https://arxiv.org/abs/2407.10360