Coating film inspection apparatus and inspection method
The coating film inspection apparatus according to one embodiment of the present invention comprises a terahertz-wave generator that generates a terahertz-wave; an irradiation optical system that irradiates, with the terahertz-wave, a sample with a film formed thereon; a terahertz-wave detector that detects a terahertz-wave reflected at the sample; and a control unit that shows an electric field intensity of the detected terahertz-wave in wave form data on a time axis to detect a plurality of peaks from the wave form data, and also calculates film thickness on the basis of time difference between peaks.
1. A coating film inspection apparatus, comprising:
a terahertz-wave generator that generates a terahertz-wave;
an irradiation optical system that irradiates a metallic coated sample with the terahertz-wave;
a terahertz-wave detector that detects a plurality of polarization components of a terahertz-wave reflected at the sample; and
a control unit that calculates an index value of the metallic coated sample on the basis of the detected plurality of polarization components; and
rotation means that makes it possible to detect the plurality of polarization components by rotating the terahertz-wave detector by a prescribed angle relative to a light axis of the reflected terahertz-wave.
2. The coating film inspection apparatus according to claim 1 , wherein the prescribed angle is approximately 45°, and the terahertz-wave detector detects two polarization components before and after the rotation.
3. The coating film inspection apparatus according to claim 1 , wherein the terahertz-wave detector includes a dipole antenna-type detector.
4. The coating film inspection apparatus according to claim 1 , wherein the terahertz-wave detector includes an EO crystal.