Isolating Pure Quadratic Zeeman Splitting

Fuente: arXiv
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Main Authors: Fard, Arash Dezhang, Kopciuch, Marek, Sun, Yujie, Włodarczyk, Przemysław, Pustelny, Szymon
Format: Preprint
Published: 2024
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author Fard, Arash Dezhang
Kopciuch, Marek
Sun, Yujie
Włodarczyk, Przemysław
Pustelny, Szymon
author_facet Fard, Arash Dezhang
Kopciuch, Marek
Sun, Yujie
Włodarczyk, Przemysław
Pustelny, Szymon
contents Nonlinear magnetic interactions provide access to complex quantum spin dynamics and thus enable the study of intriguing physical phenomena. However, these interactions are often dominated by the linear Zeeman effect, which can complicate system dynamics and make their analysis more challenging. In this article, we theoretically and experimentally introduce a method to induce the quadratic Zeeman effect while effectively compensating for its linear counterpart. By isolating the quadratic Zeeman contributions, we demonstrate and analyze controlled superposition generation between specific magnetic sublevels in room-temperature rubidium-87 atoms. This study opens avenues for controlling any spin system, regardless of its total angular momentum, which we plan to explore further in the context of quantum-state tomography and engineering (e.g., spin squeezing).
format Preprint
id arxiv_https___arxiv_org_abs_2412_07610
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Isolating Pure Quadratic Zeeman Splitting
Fard, Arash Dezhang
Kopciuch, Marek
Sun, Yujie
Włodarczyk, Przemysław
Pustelny, Szymon
Quantum Physics
Atomic Physics
Nonlinear magnetic interactions provide access to complex quantum spin dynamics and thus enable the study of intriguing physical phenomena. However, these interactions are often dominated by the linear Zeeman effect, which can complicate system dynamics and make their analysis more challenging. In this article, we theoretically and experimentally introduce a method to induce the quadratic Zeeman effect while effectively compensating for its linear counterpart. By isolating the quadratic Zeeman contributions, we demonstrate and analyze controlled superposition generation between specific magnetic sublevels in room-temperature rubidium-87 atoms. This study opens avenues for controlling any spin system, regardless of its total angular momentum, which we plan to explore further in the context of quantum-state tomography and engineering (e.g., spin squeezing).
title Isolating Pure Quadratic Zeeman Splitting
topic Quantum Physics
Atomic Physics
url https://arxiv.org/abs/2412.07610