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Spectra of Neutron Wave Functions in Earth's Gravitational Field

Authors :
Suda, Martin
Faber, Manfried
Bosina, Joachim
Jenke, Tobias
Käding, Christian
Micko, Jakob
Pitschmann, Mario
Abele, Hartmut
Publication Year :
2021

Abstract

The time evolution of a quantum wave packet in the linear gravity potential is known as Quantum Bouncing Ball. The qBounce collaboration recently observed such a system by dropping wave packets of ultracold neutrons by a height of roughly 30 microns. In this article, space and momentum spectra as well as Wigner functions of the neutron wave functions in the gravitational field of the Earth are analyzed. We investigate the quantum states in the "preparation region", into which they transition after exiting a narrow double-mirror system and where we would expect to observe free fall and bounces in classical physics. For this, we start from the stationary solutions and eigenvalues of the Schr\"odinger equation in terms of Airy functions and their zeros. Subsequently, we examine space and momentum distributions as well as Wigner functions in phase space for pure and mixed quantum states. The eventual influence of Yukawa-like forces for small distances of several micrometers from the mirror is included through first order perturbation calculations. Those allow us to study the resulting modifications of space and momentum distributions, and phase space functions.<br />Comment: 24 pages, 43 figures

Subjects

Subjects :
Quantum Physics

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2111.02769
Document Type :
Working Paper
Full Text :
https://doi.org/10.1515/zna-2022-0050