Combined amplitude and phase filters for increased tolerance to spherical aberration
暂无分享,去创建一个
[1] F. Gan,et al. High focal depth with a pure-phase apodizer. , 2001, Applied optics.
[2] W. Cathey,et al. Extended depth of field through wave-front coding. , 1995, Applied optics.
[3] A Márquez,et al. Amplitude Apodizers Encoded onto Fresnel Lenses Implemented on a Phase-Only Spatial Light Modulator. , 2001, Applied optics.
[4] J Ojeda-Castañeda,et al. Spatial filter for increasing the depth of focus. , 1985, Optics letters.
[5] M. Mino,et al. Improvement in the OTF of a Defocused Optical System Through the Use of Shaded Apertures. , 1971, Applied optics.
[6] J. Ojeda-Castañeda,et al. Annular apodizers for low sensitivity to defocus and to spherical aberration. , 1986, Optics letters.
[7] J Ojeda-Castaneda,et al. Arbitrarily high focal depth with a quasioptimum real and positive transmittance apodizer. , 1989, Applied optics.
[8] Andrew R Harvey,et al. Phase pupil functions for reduction of defocus and spherical aberrations. , 2003, Optics letters.
[9] Pedro Andrés,et al. Strehl ratio with low sensitivity to spherical aberration , 1988 .
[10] M. J. Yzuel,et al. A Study of the Possibility of Image Optimization by Apodization Filters in Optical Systems with Residual Aberrations , 1979 .
[11] A Pons,et al. Apodization of annular apertures: Strehl ratio. , 1988, Applied optics.
[12] J. P. Woerdman,et al. Observation of a stronger focus due to spherical aberration , 1998 .
[13] Ajay Ghosh,et al. High tolerance to spherical aberrations and defects of focus with a birefringent lens. , 2002, Applied optics.
[14] E. E. Sicre,et al. Phase pupil functions for focal-depth enhancement derived from a Wigner distribution function. , 1998, Applied optics.