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MODELING OF COMPOSITE MATERIALS
PROCESSING AND CHARACTERIZATION
10 other sections not shown
acoustic active vibration control actuator analysis aperture applications beam boundary conditions BRDF calculated carrier ceramic chiral coefficient collocated composite configuration constant cosz crystal density dependence deposition devices dielectric diffraction distributed transducers domain wall dynamic effect electromagnetic electronic energy equation excited state absorption experimental feedback ferrite ferrite films ferroelectric fiber Figure fluence flux frequency function GaAs garnet films hexanoic acid incident input integral intensity laser layer linear loss tangent magnetic field materials matrix measured mechanical method microwave mode multilayer nonlinear absorption nonlinear optical nonlinear refraction obtained optical coatings optical fiber optical limiting parameters particle permittivity phase piezoelectric shell plane plate polarization polymer propagation properties pulse pusher reflectance refractive index retroreflective sample scattering semiconductor shear shown in Fig signal sinz sol-gel solution spatial strain structure substrate surface technique temperature theory thermal thickness thin films transducers transmission transmitted values Varadan vector velocity wave wavelength Z-scan