An optical apparatus for total internal reflection spectroscopy comprises: a
transparent
body having an internally reflective surface; at least one source of electromagnetic
radiation for providing at least one beam of collimated electromagnetic radiation;
optical scanning means for directing the beam or beams to the transparent body
so that the radiation is internally reflected at the reflective surface, and sequentially
or continuously scanning the incident angle of the radiation over an angular range;
at least one detector for detecting electromagnetic radiation exiting the transparent
body, and means for counteracting variation of the irradiance in the illuminated
area of the surface during the angular scan, or the effect of such variation on
the reflected beam or beams. An optical apparatus for examining thin layer structures
on a surface for differences in respect of optical thickness and/or refractive
index, and a method for total internal reflection spectroscopy are also disclosed.