Individual Addressing and State Readout of Trapped Ions Utilizing Radio-Frequency Micromotion

Fuente: arXiv
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Main Authors: Lysne, Nathan K, Niedermeyer, Justin F, Wilson, Andrew C, Slichter, Daniel H, Leibfried, Dietrich
Format: Preprint
Published: 2024
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_version_ 1866913619868909568
author Lysne, Nathan K
Niedermeyer, Justin F
Wilson, Andrew C
Slichter, Daniel H
Leibfried, Dietrich
author_facet Lysne, Nathan K
Niedermeyer, Justin F
Wilson, Andrew C
Slichter, Daniel H
Leibfried, Dietrich
contents Excess "micromotion" of trapped ions due to the residual radio-frequency (rf) trapping field at their location is often undesirable and is usually carefully minimized. Here, we induce precise amounts of excess micromotion on individual ions by adjusting the local static electric field they experience. Micromotion modulates the coupling of an ion to laser fields, ideally tuning it from its maximum value to zero as the ion is moved away from the trap's rf null. We use tunable micromotion to vary the Rabi frequency of stimulated Raman transitions over two orders of magnitude, and to individually control the rates of resonant fluorescence from three ions under global laser illumination without any changes to the driving light fields. The technique is amenable to situations where addressing individual ions with focused laser beams is challenging, such as tightly packed linear ion strings or two-dimensional ion arrays illuminated from the side.
format Preprint
id arxiv_https___arxiv_org_abs_2402_05857
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Individual Addressing and State Readout of Trapped Ions Utilizing Radio-Frequency Micromotion
Lysne, Nathan K
Niedermeyer, Justin F
Wilson, Andrew C
Slichter, Daniel H
Leibfried, Dietrich
Atomic Physics
Quantum Physics
Excess "micromotion" of trapped ions due to the residual radio-frequency (rf) trapping field at their location is often undesirable and is usually carefully minimized. Here, we induce precise amounts of excess micromotion on individual ions by adjusting the local static electric field they experience. Micromotion modulates the coupling of an ion to laser fields, ideally tuning it from its maximum value to zero as the ion is moved away from the trap's rf null. We use tunable micromotion to vary the Rabi frequency of stimulated Raman transitions over two orders of magnitude, and to individually control the rates of resonant fluorescence from three ions under global laser illumination without any changes to the driving light fields. The technique is amenable to situations where addressing individual ions with focused laser beams is challenging, such as tightly packed linear ion strings or two-dimensional ion arrays illuminated from the side.
title Individual Addressing and State Readout of Trapped Ions Utilizing Radio-Frequency Micromotion
topic Atomic Physics
Quantum Physics
url https://arxiv.org/abs/2402.05857