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Field Effect Transistor01:29

Field Effect Transistor

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Related Experiment Video

Updated: Jun 6, 2026

Development of Whispering Gallery Mode Polymeric Micro-optical Electric Field Sensors
08:32

Development of Whispering Gallery Mode Polymeric Micro-optical Electric Field Sensors

Published on: January 29, 2013

A typical noiseless Pockels E field sensor.

Yukihito Fukui1, Katsuo Okumura, Hiroshi Moritake

  • 1Shibaura Institute of Technology, 3-7-5 Toyosu, Kouto-ku, Tokyo, Japan.

The Review of Scientific Instruments
|December 8, 2010
PubMed
Summary

A novel Pockels electric field sensor minimizes noise using ferroelectric liquid crystals and optical fibers. This advancement significantly enhances measurement sensitivity for electrical discharges and other applications.

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Area of Science:

  • Physics
  • Electrical Engineering
  • Optical Sensing

Background:

  • Traditional electric field sensors face limitations due to optical and electronic noise.
  • Accurate measurement of electric fields is crucial for understanding phenomena like electrical discharges.

Purpose of the Study:

  • To demonstrate a new practical Pockels electric field sensor with significantly reduced noise.
  • To experimentally validate the sensor's performance under various electric field conditions.

Main Methods:

  • Integration of a ferroelectric liquid crystal with a polarization-maintaining optical fiber.
  • Experimental testing in uniform and nonuniform electric fields, including AC voltages in corona discharge.

Main Results:

  • Theoretical and experimental elimination of optical and electronic noise.
  • Reduction of the minimum measurable electric field from 10^2 to 10^-1 kV/m with a 10^-5 rad phase change detection limit.

Conclusions:

  • The new Pockels sensor offers unprecedented sensitivity and noise reduction for electric field measurements.
  • This technology has broad applicability in electrical discharge studies and other optical sensing applications (length, temperature, pressure).