Home > Exploring the Spatial Resolution of the Photothermal Beam Deflection Technique in the Infrared Region |
Article | |
Title | Exploring the Spatial Resolution of the Photothermal Beam Deflection Technique in the Infrared Region |
Author(s) | Seidel, Wolfgang ; Foerstendorf, Harald |
Affiliation | (FZR, Dresden LURE, Orsay) |
Publication | 2004 |
In: | 26th International Free Electron Laser Conference and 11th FEL User Workshop 2004, Trieste, Italy, 29 Aug - 3 Sep 2004, pp.e-proc. THPOS05 |
Subject category | Accelerators and Storage Rings |
Abstract | In photothermal beam deflection spectroscopy (PTBD) generating and detection of thermal waves occur generally in the sub-millimeter length scale. Therefore, PTBD provides spatial information about the surface of the sample and permits imaging and/or microspectrometry. Recent results of PTBD experiments are presented with a high spatial resolution which is near the diffraction limit of the infrared pump beam (CLIO-FEL). We investigated germanium substrates showing restricted O+-doped regions with an infrared absorption line at a wavelength around 11.6 microns. The spatial resolution was obtained by strongly focusing the probe beam (i.e. a HeNe laser) on a sufficiently small spot. The strong divergence makes it necessary to refocus the probe beam in front of the position detector. The influence of the focusing elements on spatial resolution and signal-to-noise ratio is discussed. In future studies we expect an enhanced spatial resolution due to an extreme focusing of the probe beam leading to a highly sensitive technique for detection of sorbed species on surfaces in the far infrared region. |