Title :
Diffraction-Limited Infrared-Imaging of the Near-Field Intensity Emitted by Quantum-Cascade Lasers
Author :
Kinzer, Michel ; Yang, Quankui K. ; Hugger, Stefan ; Brunner, Marie ; Fuchs, Frank ; Wagner, Joachim
Author_Institution :
Fraunhofer Inst. for Appl. Solid State Phys., Freiburg, Germany
fDate :
5/1/2012 12:00:00 AM
Abstract :
The near-field intensity distributions of quantum-cascade lasers emitting at λ = 7.7 μm were investigated with a Gaussian telescope, comprising standard optical components together with a microbolometer focal plane array. Although the technique is operated at the diffraction limit, the quality of the near-field patterns obtained allows unambiguous determination of the lateral-mode structure of the laser even for individual laser pulses. The high quality of the recorded near-field intensity distribution allows us to calculate analytically the corresponding far-field intensity distributions, leading to an excellent match with measured far-field patterns. The present experimental technique allows fast and efficient characterization of the beam propagation properties of mid-infrared semiconductor lasers.
Keywords :
focal planes; light diffraction; quantum cascade lasers; Gaussian telescope; beam propagation properties; diffraction-limited infrared-imaging; far-field intensity distributions; far-field patterns; individual laser pulses; lateral-mode structure; microbolometer focal plane array; mid-infrared semiconductor lasers; near-field intensity distributions; near-field patterns; quantum-cascade lasers; standard optical components; wavelength 7.7 mum; Laser modes; Lenses; Measurement by laser beam; Optical imaging; Physics; Quantum cascade lasers; Semiconductor device measurement; Beam steering; lateral modes; near-field imaging; quantum-cascade laser;
Journal_Title :
Quantum Electronics, IEEE Journal of
DOI :
10.1109/JQE.2012.2190718