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APPLIED OPTICS, ISSN 1559-128X, 07/2018, Volume 57, Issue 19, pp. 5281 - 5287
In this paper, we present a detailed and rigorous study of cylindrical harmonic Fresnel lenses (HFLs) using the finite difference time domain method (FDTD) and... 
KINOFORM | CYLINDRICAL MICROLENSES | ABERRATION | RAYLEIGH-SOMMERFELD METHOD | PERFORMANCE | DIFFRACTIVE OPTICAL-ELEMENTS | OPTICS | EFFICIENCY | METASURFACES | MIRRORS
Journal Article
Optics Communications, ISSN 0030-4018, 03/2013, Volume 291, pp. 359 - 365
Through changing various parameters, the validity range of the improved Rayleigh–Sommerfeld method (IRSM) in analyzing metallic cylindrical focusing... 
Improved Rayleigh–Sommerfeld method | Focal properties | Validity range | Boundary element method | Metallic cylindrical focusing micromirrors | Improved Rayleigh-Sommerfeld method | GRATINGS | MICROLENSES | OPTICS | MIRRORS
Journal Article
Optics Letters, ISSN 0146-9592, 12/2013, Volume 38, Issue 24, pp. 5296 - 5298
The first Rayleigh-Sommerfeld diffraction formula is treated in an exact form as a three-dimensional (3D) convolution in the spatial domain. Therefore, a 3D... 
APERTURE | IMAGE | OPTICS | MICROSCOPY | RAYLEIGH-SOMMERFELD DIFFRACTION | Fourier transforms | Evanescent waves | Convolution | Diffraction | Approximation | Mathematical models | Electromagnetic fields | Three dimensional
Journal Article
Proceedings of SPIE - The International Society for Optical Engineering, ISSN 0277-786X, 2010, Volume 7657
Computers, mobile phones, cameras and video equipment and other electronic products, Moving in the light, thin, small, high speed, high reliability,... 
Rayleigh - sommerfeld diffraction theory | Moire fringe detection | Diffraction theory | Deformation | Electronic devices | Electronic components | Electronics | Moire fringes | Warpage | Nanostructure | Electronics packaging
Conference Proceeding
Proceedings of SPIE - The International Society for Optical Engineering, ISSN 0277-786X, 2015, Volume 9630
Conference Proceeding
Medical Physics, ISSN 0094-2405, 11/2015, Volume 42, Issue 11, pp. 6514 - 6519
Purpose: Grating interferometry is a state‐of‐the‐art x‐ray imaging approach, which can acquire information on x‐ray attenuation, phase shift, and small‐angle... 
Talbot effect | X‐ray imaging | biomedical equipment | Diffraction gratings | Hard X‐ray sources | Devices sensitive to very short wavelength, e.g. x‐rays, gamma‐rays or corpuscular radiation | X‐ and γ‐ray instruments | Interferometers | Optical microscopy | Medical X‐ray imaging | numerical analysis | light interferometry | Numerical approximation and analysis | Interferometry | Interference | X‐ray technique | biological tissues | Interferometric imaging | diagnostic radiography | X‐ray tubes | Biological material, e.g. blood, urine; Haemocytometers | Radiography | Image analysis | x‐ray diffraction | Rayleigh–Sommerfeld diffraction | spherical grating | Hard X‐rays | Transforming x‐rays | biomedical optical imaging | x-ray diffraction | Rayleigh-Sommerfeld diffraction | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | Models, Theoretical | Interferometry - methods | X-Ray Diffraction - instrumentation | Interferometry - instrumentation | Equipment Design | Refractometry - methods | X-Rays | Computer Simulation | Scattering, Radiation | Computer-Aided Design | X-Ray Diffraction - methods | Refractometry - instrumentation | Equipment Failure Analysis | PHASE SHIFT | INSTRUMENTATION RELATED TO NUCLEAR SCIENCE AND TECHNOLOGY | BIOMEDICAL RADIOGRAPHY | ANIMAL TISSUES | 60 APPLIED LIFE SCIENCES | PERIODICITY | X-RAY SOURCES | COMPUTERIZED SIMULATION | SPHERICAL CONFIGURATION | X-RAY TUBES | GRATINGS | INTERFEROMETERS | IMAGES | ANGULAR DISTRIBUTION | ATTENUATION | INTERFEROMETRY | SMALL ANGLE SCATTERING | Radiation Imaging Physics
Journal Article
Optics Communications, ISSN 0030-4018, 05/2017, Volume 391, pp. 24 - 29
Theoretical and numerical analysis of the plane wave diffraction by a fractional axicon with less than one degree is performed in the near-field considering... 
Modified method of stationary phase | Fractional axicon | Rayleigh-Sommerfeld integral | Evanescent waves | Near-field diffraction | DIFFRACTION | OPTICS | EXTENDED DEPTH | KIRCHHOFF | Analysis | Numerical analysis
Journal Article
Journal of Lightwave Technology, ISSN 0733-8724, 03/2013, Volume 31, Issue 6, pp. 930 - 935
Journal Article
AIP Conference Proceedings, ISSN 0094-243X, 2012, Volume 1481, pp. 149 - 154
Conference Proceeding
IEEE Transactions on Terahertz Science and Technology, ISSN 2156-342X, 05/2016, Volume 6, Issue 3, pp. 371 - 381
Journal Article
Journal of Infrared, Millimeter, and Terahertz Waves, ISSN 1866-6892, 7/2011, Volume 32, Issue 7, pp. 887 - 896
Journal Article
Guangxue Xuebao/Acta Optica Sinica, ISSN 0253-2239, 06/2006, Volume 26, Issue 6, pp. 851 - 853
Journal Article
Optik - International Journal for Light and Electron Optics, ISSN 0030-4026, 2003, Volume 114, Issue 7, pp. 298 - 304
In a scalar treatment, the three dimensional irradiance distribution in the focal region of a monochromatic convergent uniform spherical wave diffracted at a... 
scalar diffraction | numerical integration | Diffraction | focused beams | Rayleigh-Sommerfeld diffraction integrals | Numerical integration | Focused beams | Scalar diffraction | diffraction | FRESNEL NUMBERS | FILTERS | FOCUS | APERTURE | SYSTEMS | OPTICS
Journal Article
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