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Updated: Mar 11, 2026

Implementation of a Reference Interferometer for Nanodetection
Published on: April 26, 2014
Far-infrared tangential interferometer/polarimeter design and installation for NSTX-U
E R Scott1, R Barchfeld2, P Riemenschneider3
1Department of Mechanical and Aerospace Engineering, University of California, Davis, California 95616, USA.
The refurbished Far-infrared Tangential Interferometer/Polarimeter (FIReTIP) system now provides real-time electron density measurements for the National Spherical Torus Experiment-Upgrade (NSTX-U) plasma control system. This upgrade enables precise, real-time density feedback control for improved plasma stability.
Area of Science:
- Fusion Energy Research
- Plasma Physics
- Optical Diagnostics
Background:
- The National Spherical Torus Experiment-Upgrade (NSTX-U) requires precise real-time plasma diagnostics for effective control.
- Previous diagnostic systems may have limitations in providing core electron density data for feedback control loops.
Purpose of the Study:
- To refurbish and reinstall the Far-infrared Tangential Interferometer/Polarimeter (FIReTIP) system on NSTX-U.
- To enable real-time line-integrated core electron density measurements for plasma control.
- To implement real-time vibration compensation and signal correction for enhanced diagnostic accuracy.
Main Methods:
- Refurbishment of the FIReTIP system.
- Integration of a visible light heterodyne interferometer for vibration compensation.
- Utilizing a National Instruments CompactRIO field-programmable gate array for real-time signal processing.
Main Results:
- The refurbished FIReTIP system is being reinstalled on NSTX-U.
- The system will supply real-time line-integrated core electron density measurements.
- Real-time vibration compensation and signal correction mechanisms are incorporated.
Conclusions:
- The enhanced FIReTIP system will provide crucial real-time data for the NSTX-U plasma control system (PCS).
- This facilitates real-time density feedback control, leading to improved plasma stability and performance.
- The integration of advanced optical and processing techniques ensures reliable diagnostic measurements.
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