Tweezer interferometry with NOON states

Fuente: arXiv
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Autori principali: Winsten, Yehoshua, Cohen, Doron, Sagi, Yoav
Natura: Preprint
Pubblicazione: 2024
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author Winsten, Yehoshua
Cohen, Doron
Sagi, Yoav
author_facet Winsten, Yehoshua
Cohen, Doron
Sagi, Yoav
contents Atomic interferometers measure phase differences along paths with exceptional precision. Tweezer interferometry represents a novel approach for this measurement by guiding particles along predefined trajectories. This study explores the feasibility of using condensed bosons in tweezer interferometry. Unlike the factor $\sqrt{N}$ enhancement expected with classical ensembles, using NOON state interferometry can yield an enhancement by a factor of $N$. We consider a protocol for a tweezer-based NOON state interferometer that includes adiabatic splitting and merging of condensed bosons, followed by adiabatic branching for phase encoding. Our theoretical analysis focuses on the conditions necessary to achieve adiabaticity and avoid spontaneous symmetry breaking. Additionally, we demonstrate the feasibility of the proposed scheme and estimate the time required to perform these sweep processes.
format Preprint
id arxiv_https___arxiv_org_abs_2405_08088
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Tweezer interferometry with NOON states
Winsten, Yehoshua
Cohen, Doron
Sagi, Yoav
Quantum Physics
Quantum Gases
Atomic interferometers measure phase differences along paths with exceptional precision. Tweezer interferometry represents a novel approach for this measurement by guiding particles along predefined trajectories. This study explores the feasibility of using condensed bosons in tweezer interferometry. Unlike the factor $\sqrt{N}$ enhancement expected with classical ensembles, using NOON state interferometry can yield an enhancement by a factor of $N$. We consider a protocol for a tweezer-based NOON state interferometer that includes adiabatic splitting and merging of condensed bosons, followed by adiabatic branching for phase encoding. Our theoretical analysis focuses on the conditions necessary to achieve adiabaticity and avoid spontaneous symmetry breaking. Additionally, we demonstrate the feasibility of the proposed scheme and estimate the time required to perform these sweep processes.
title Tweezer interferometry with NOON states
topic Quantum Physics
Quantum Gases
url https://arxiv.org/abs/2405.08088