Decoherence of a matter-wave interferometer due to dipole-dipole interactions

Fuente: arXiv
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Main Authors: Fragolino, Paolo, Schut, Martine, Toroš, Marko, Bose, Sougato, Mazumdar, Anupam
Format: Preprint
Published: 2023
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_version_ 1866911811050143744
author Fragolino, Paolo
Schut, Martine
Toroš, Marko
Bose, Sougato
Mazumdar, Anupam
author_facet Fragolino, Paolo
Schut, Martine
Toroš, Marko
Bose, Sougato
Mazumdar, Anupam
contents Matter-wave interferometry with nanoparticles will enable the development of quantum sensors capable of probing ultraweak fields with unprecedented applications for fundamental physics. The high sensitivity of such devices however makes them susceptible to a number of noise and decoherence sources and as such can only operate when sufficient isolation from the environment is achieved. It is thus imperative to model and characterize the interaction of nanoparticles with the environment and to estimate its deleterious effects. The aim of this paper will be to study the decoherence of the matter-wave interferometer due to dipole-dipole interactions which is one of the unavoidable channels for decoherence even for a neutral micro-crystal. We will start the analysis from QED and show that it reduces to the scattering model characterized by the differential cross-section. We will then obtain simple expressions for the decoherence rate in the short and long wavelength limits that can be readily applied to estimate the available coherence time. We will conclude by applying the obtained formulae to estimate the dipole-dipole decoherence rate for the Quantum Gravity-induced Entanglement of Masses (QGEM) protocol and discuss if the effects should be mitigated.
format Preprint
id arxiv_https___arxiv_org_abs_2307_07001
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Decoherence of a matter-wave interferometer due to dipole-dipole interactions
Fragolino, Paolo
Schut, Martine
Toroš, Marko
Bose, Sougato
Mazumdar, Anupam
Quantum Physics
Matter-wave interferometry with nanoparticles will enable the development of quantum sensors capable of probing ultraweak fields with unprecedented applications for fundamental physics. The high sensitivity of such devices however makes them susceptible to a number of noise and decoherence sources and as such can only operate when sufficient isolation from the environment is achieved. It is thus imperative to model and characterize the interaction of nanoparticles with the environment and to estimate its deleterious effects. The aim of this paper will be to study the decoherence of the matter-wave interferometer due to dipole-dipole interactions which is one of the unavoidable channels for decoherence even for a neutral micro-crystal. We will start the analysis from QED and show that it reduces to the scattering model characterized by the differential cross-section. We will then obtain simple expressions for the decoherence rate in the short and long wavelength limits that can be readily applied to estimate the available coherence time. We will conclude by applying the obtained formulae to estimate the dipole-dipole decoherence rate for the Quantum Gravity-induced Entanglement of Masses (QGEM) protocol and discuss if the effects should be mitigated.
title Decoherence of a matter-wave interferometer due to dipole-dipole interactions
topic Quantum Physics
url https://arxiv.org/abs/2307.07001