A method for testing the transmitted wavefront of large aperture long-focal-length lens with a multizone computer-generated hologram (CGH) is proposed. The multizone CGH has 5 zones: one main zone for the null testing of long-focal-length lens and four auxiliary zones for the pre-alignment of measured lens. Both 1st order wavefront and 0th order wavefront of CGH are measured, and 0th order wavefront is used to calibrate the substrate error. To verify this test approach, a 450mm×450mm multizone CGH is designed and fabricated for testing the spatial filter lens. Experiments and error analysis are carried out. The results show that the desired precision can be reached with use of CGH
Computer-generated holograms (CGHs) use diffraction to create wavefronts of light with desired ampli...
Computer-generated hologram (CGH) is an effective way to compensate wavefront aberration in null tes...
The necessity to align a multi component null corrector that is used to test the 8.4 [m] off axis pa...
A method for testing the transmitted wavefront of large aperture long-focal-length lens with a multi...
High-power laser system has a requirement for the medium and low spatial wavefront errors of the tra...
The lens is one of the most commonly used optical elements. Yet it is sometimes difficult to make ac...
We describe the optical test of a large flat based on a spherical mirror and a dedicated CGH. The sp...
Optical testing often requires a measurement of the phase difference between light from two differen...
We introduce a holographic wide angle system that combines the accuracy of a long focal length with ...
Interferometry with computer generated holograms (CGH) has evolved to be a standard technology for o...
Thesis (M.S.)--University of Rochester. College of Engineering and Applied Science. Institute of Opt...
A Computer Generated Hologram (CGH) is used as an aberration corrector in con-struction optics to re...
Multi-Zonal computer generated holograms (MZ-CGHs) in combination with interferometric wavefront mea...
The process of Zernike mode detection with a Shack-Hartmann wavefront sensor is computationally exte...
In order to accurately test shape quality of the large diameter aspherical mirror, a kind of binary ...
Computer-generated holograms (CGHs) use diffraction to create wavefronts of light with desired ampli...
Computer-generated hologram (CGH) is an effective way to compensate wavefront aberration in null tes...
The necessity to align a multi component null corrector that is used to test the 8.4 [m] off axis pa...
A method for testing the transmitted wavefront of large aperture long-focal-length lens with a multi...
High-power laser system has a requirement for the medium and low spatial wavefront errors of the tra...
The lens is one of the most commonly used optical elements. Yet it is sometimes difficult to make ac...
We describe the optical test of a large flat based on a spherical mirror and a dedicated CGH. The sp...
Optical testing often requires a measurement of the phase difference between light from two differen...
We introduce a holographic wide angle system that combines the accuracy of a long focal length with ...
Interferometry with computer generated holograms (CGH) has evolved to be a standard technology for o...
Thesis (M.S.)--University of Rochester. College of Engineering and Applied Science. Institute of Opt...
A Computer Generated Hologram (CGH) is used as an aberration corrector in con-struction optics to re...
Multi-Zonal computer generated holograms (MZ-CGHs) in combination with interferometric wavefront mea...
The process of Zernike mode detection with a Shack-Hartmann wavefront sensor is computationally exte...
In order to accurately test shape quality of the large diameter aspherical mirror, a kind of binary ...
Computer-generated holograms (CGHs) use diffraction to create wavefronts of light with desired ampli...
Computer-generated hologram (CGH) is an effective way to compensate wavefront aberration in null tes...
The necessity to align a multi component null corrector that is used to test the 8.4 [m] off axis pa...