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Published on: February 5, 2017
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Ion trap electric field characterization using slab coupled optical fiber sensors
Spencer Chadderdon1, LeGrand Shumway, Andrew Powell
1Department of Electrical and Computer Engineering, Brigham Young University, Provo, Utah, 84602, USA.
Summary
This study introduces a novel optical fiber sensor for mapping electric fields in radio frequency quadrupole ion traps. This technology accurately characterizes complex fields, aiding in trap functionality insights.
Area of Science:
- Physics
- Electrical Engineering
- Sensor Technology
Background:
- Radio frequency quadrupole ion traps are crucial for various applications but require precise electric field characterization.
- Simulations alone may not fully capture the intricate electric field dynamics within these traps.
Purpose of the Study:
- To present a new method for characterizing electric field profiles in radio frequency quadrupole ion traps.
- To demonstrate the utility of slab coupled optical-fiber sensor (SCOS) technology for this purpose.
Main Methods:
- Utilized all-dielectric, optical fiber-sized slab coupled optical-fiber sensors (SCOS).
- Integrated SCOS into compact ion trap environments for minimal perturbation.
- Measured electric field orientation and amplitude.
Main Results:
- SCOS technology accurately mapped known electric field profiles in a standard Paul trap.
- Successfully mapped complex electric fields within a coaxial ion trap with high confidence.
- Demonstrated SCOS's capability for detailed electric field analysis in ion traps.
Conclusions:
- Slab coupled optical-fiber sensors offer a viable, minimally perturbing method for characterizing ion trap electric fields.
- This technique provides valuable experimental data complementing simulation-based analysis.
- The SCOS technology shows high accuracy and potential for advancing ion trap research.

