On the mutual exclusiveness of time and position in quantum physics and the corresponding uncertainty relation for free falling particles

Fuente: arXiv
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Auteurs principaux: Beau, Mathieu, Martellini, Lionel
Format: Preprint
Publié: 2024
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author Beau, Mathieu
Martellini, Lionel
author_facet Beau, Mathieu
Martellini, Lionel
contents The uncertainty principle is one of the characteristic properties of quantum theory, where it signals the incompatibility of two types of measurements. In this paper, we argue that measurements of time-of-arrival $T_x$ at position $x$ and position $X_t$ at time $t$ are mutually exclusive for a quantum system, each providing complementary information about the state of that system. For a quantum particle of mass $m$ falling in a uniform gravitational field $g$, we show that the corresponding uncertainty relation can be expressed as $ΔT_x ΔX_t \geq \frac{\hbar}{2mg}$. This uncertainty relationship can be taken as evidence of the presence of a form of epistemic incompatibility in the sense that preparing the initial state of the system so as to decrease the measured position uncertainty will lead to an increase in the measured time-of-arrival uncertainty. These findings can be empirically tested in the context of ongoing or forthcoming experiments on measurements of time-of-arrival for free-falling quantum particles.
format Preprint
id arxiv_https___arxiv_org_abs_2403_06057
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle On the mutual exclusiveness of time and position in quantum physics and the corresponding uncertainty relation for free falling particles
Beau, Mathieu
Martellini, Lionel
Quantum Physics
General Relativity and Quantum Cosmology
Mathematical Physics
The uncertainty principle is one of the characteristic properties of quantum theory, where it signals the incompatibility of two types of measurements. In this paper, we argue that measurements of time-of-arrival $T_x$ at position $x$ and position $X_t$ at time $t$ are mutually exclusive for a quantum system, each providing complementary information about the state of that system. For a quantum particle of mass $m$ falling in a uniform gravitational field $g$, we show that the corresponding uncertainty relation can be expressed as $ΔT_x ΔX_t \geq \frac{\hbar}{2mg}$. This uncertainty relationship can be taken as evidence of the presence of a form of epistemic incompatibility in the sense that preparing the initial state of the system so as to decrease the measured position uncertainty will lead to an increase in the measured time-of-arrival uncertainty. These findings can be empirically tested in the context of ongoing or forthcoming experiments on measurements of time-of-arrival for free-falling quantum particles.
title On the mutual exclusiveness of time and position in quantum physics and the corresponding uncertainty relation for free falling particles
topic Quantum Physics
General Relativity and Quantum Cosmology
Mathematical Physics
url https://arxiv.org/abs/2403.06057