Removal of high-voltage-induced surface charges by ultraviolet light
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Published version
OA Location
Author(s)
Ziemba, MT
Phrompao, J
Jung, F
Rabey, IM
Rempe, G
Type
Journal Article
Abstract
A plethora of studies ranging from precision physics to quantum information employ ions, highly excited neutral atoms, or polar molecules as tools. Motivated by the need for miniaturization, scalability, and controllability, the particles are often trapped close to electrodes imprinted on dielectric surfaces. However, such geometry makes the particles susceptible to undesired surface charges. To understand how high voltage applied to the electrodes mediates the buildup of charges, we use a scanning Kelvin probe in an ultrahigh vacuum to investigate the electric potential landscape of an electrostatic molecule trap with a microstructured electrode array. We find that the surface becomes positively charged after applying voltages to the electrodes, leading to offset and patch electric potentials across the surface. Removal of these charges is demonstrated using ultraviolet light. The dynamics of this process, including the dependence on light intensity, wavelength, and sample type, are investigated in detail. We find the charge removal to be faster for shorter ultraviolet wavelengths, with an additional polymer coating providing further enhancement. Our findings may be useful in a wide spectrum of experiments with electric-field-sensitive particles.
Date Issued
2025-07-01
Date Acceptance
2025-06-10
Citation
Review of Scientific Instruments, 2025, 96 (7)
ISSN
0034-6748
Publisher
American Institute of Physics
Journal / Book Title
Review of Scientific Instruments
Volume
96
Issue
7
Copyright Statement
© 2025 Author(s). All article content, except where otherwise noted, is licensed under a Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
License URL
Publication Status
Published
Article Number
073201
Date Publish Online
2025-07-03
