Reduction of speckle noise in laser energy distribution on the target by means of modified Fourier hologram and incoherent averaging technique
Journal Title: Semiconductor Physics, Quantum Electronics and Optoelectronics - Year 2018, Vol 21, Issue 4
Abstract
Presented in this paper is the technique of formation of required laser intensity distribution on the target with a reduced speckle noise. The method is based on the use of modified Fourier hologram adapted to controlled phase modulators. Reduction of the speckle noise in the laser energy profile is obtained using multiple incoherent superposition of synthesized holographic images. Each hologram is synthesized with different random diffuser. The advantages of this method: relative simplicity of hardware; robustness with regard to distortions of any kind in input beam and/or optical path of the scheme; controlled reduction of the speckle noise in the final energy distribution.
Authors and Affiliations
A. G. Derzhypolskyi
Designing and manufacturing aspherical polystyrene lenses for the terahertz region
We report on the development of lenses for terahertz vision systems from their design up to manufacturing. Fused deposition modeling was used for assisting the 3D printing manufacturing process. HIP (High Impact Polystyr...
Multiferroic based on nematic liquid crystal and nanoparticles
Multiferroics stable in morphological parameters has been created by introducing ferromagnetic (Fe2O3) and ferroelectric (LiNbO3) nanoparticles with the concentration 0.3 wt.% into nematic liquid crystal 6СНВТ. Being bas...
Resonance phenomena in one-dimensional grating-based structures
Enhanced optical transmission through metallic 1-D grating-based structures has been studied using the rigorous coupled wave analysis. The results have shown that optical transmission is determined by waveguide propertie...
Domain structure regularization in monocrystalline barium hexaferrite
Conditions for regular domain structure formation in a monocrystalline barium hexaferrite plate have been studied experimentally. The purpose of the work was to develop a simple and, at the same time, an effective method...
Local vibrational density of states in disordered graphene
Local vibrational density of states for disordered graphene has been calculated via Green’s functions method. Disordered material has been modeled with Bethe lattice. Density of states does not include particularities sp...