Thermal wave probing of pyroelectric distributions in the surface region of ferroelectric materials: A new method for the analysis
- 1 December 1992
- journal article
- Published by AIP Publishing in Journal of Applied Physics
- Vol. 72 (11) , 5363-5370
- https://doi.org/10.1063/1.351975
Abstract
For the investigation of polarization distributions in pyroelectric materials, the laser intensity modulation method (LIMM), which is based on thermal waves, is widely used. With this method, the sample under investigation is heated by the absorption of intensity modulated light at one surface, while the pyroelectric current is measured. The thermal excitation generates a thermal wave penetrating into the sample. The penetration depth is varied with the modulation frequency. A new procedure for the reconstruction of the polarization distribution from a measured pyroelectric current spectrum is introduced. This procedure is especially well suited for polarization probing near the sample surface. An approximation for the polarization distribution is calculated from a measured pyroelectric spectrum in a very simple and direct way, avoiding mathematical instabilities. The calculation can be performed during the measurement of a pyroelectric current spectrum. This makes LIMM an on‐line procedure. The new technique of analysis is applied to the measurement of thin depolarized layers near the surface of homogeneously poled ferroelectric polymer films.This publication has 16 references indexed in Scilit:
- Design and properties of a microcalorimeterIEEE Transactions on Electrical Insulation, 1992
- Measurement of the thermal diffusivity of thin films with bolometers and with pyroelectric temperature sensorsFerroelectrics, 1991
- Pyroelectric calorimeter for photothermal studies of thin films and adsorbatesJournal of Vacuum Science & Technology A, 1987
- Laser-intensity-modulation method: A technique for determination of spatial distributions of polarization and space charge in polymer electretsJournal of Applied Physics, 1986
- Numerical evaluation of the dielectric polarization distribution from thermal-pulse dataJournal of Applied Physics, 1982
- Observation of charge compensated polarization zones in polyvinylindenfluoride (PVDF) films by piezoelectric acoustic step-wave responseSolid State Communications, 1982
- High-Resolution Laser-Pulse Method for Measuring Charge Distributions in DielectricsPhysical Review Letters, 1982
- Determination of Charge or Polarization Distribution across Polymer Electrets by the Thermal Pulse Method and Fourier AnalysisPhysical Review Letters, 1978
- New Principle for the Determination of Potential Distributions in DielectricsPhysical Review Letters, 1977
- The polarization of PVF and PVF2pyroelectricsFerroelectrics, 1974