The analytical expression of the phase profile of the optimum diffractive beam splitter with an arbitrary power ratio between the two output beams is derived. The phase function is obtained by an analytical optimization procedure such that the diffraction efficiency of the resulting optical element is the highest for an actual device. Comparisons are presented with the efficiency of a diffractive beam splitter specified by a sawtooth phase function and with the pertinent theoretical upper bound for this type of element. (C) 2000 Optical Society of America [S0740-3232(00)00701-8]
A binary diffractive optical element, acting as a polarizing beam splitter, is proposed and analyzed...
A binary diffractive optical element, acting as a polarizing beam splitter, is proposed and analyzed...
In this paper, a reflecting polarizing beam splitter (RPBS) with a metal-multilayer dielectric grati...
The analytical expression of the phase profile of the optimum diffractive beam splitter with an arbi...
The even-phase diffractive optical element that produces four equi-intense diffraction orders with m...
The analytical derivation of the phase profile of a diffractive optical element that produces three ...
Diffractive optical elements with a large diffraction angle require feature sizes down to sub-wavele...
The even-phase diffractive optical element that produces four equi-intense diffraction orders with m...
The even-phase diffractive optical element that produces four equi-intense diffraction orders with m...
This paper deals with phase gratings working in the paraxial domain. The profile of the optimum-effi...
This paper deals with phase gratings working in the paraxial domain. The profile of the optimum-effi...
Optimal optical parameters of the beam splitter that is used in the division-of-amplitude photopolar...
Controlling the phase of light with a high efficiency and precision is essential for applications in...
A binary diffractive optical element, acting as a polarizing beam splitter, is proposed and analyzed...
The goal of this paper is to design a low-loss 1 x 32 Y-branch optical splitter for optical transmis...
A binary diffractive optical element, acting as a polarizing beam splitter, is proposed and analyzed...
A binary diffractive optical element, acting as a polarizing beam splitter, is proposed and analyzed...
In this paper, a reflecting polarizing beam splitter (RPBS) with a metal-multilayer dielectric grati...
The analytical expression of the phase profile of the optimum diffractive beam splitter with an arbi...
The even-phase diffractive optical element that produces four equi-intense diffraction orders with m...
The analytical derivation of the phase profile of a diffractive optical element that produces three ...
Diffractive optical elements with a large diffraction angle require feature sizes down to sub-wavele...
The even-phase diffractive optical element that produces four equi-intense diffraction orders with m...
The even-phase diffractive optical element that produces four equi-intense diffraction orders with m...
This paper deals with phase gratings working in the paraxial domain. The profile of the optimum-effi...
This paper deals with phase gratings working in the paraxial domain. The profile of the optimum-effi...
Optimal optical parameters of the beam splitter that is used in the division-of-amplitude photopolar...
Controlling the phase of light with a high efficiency and precision is essential for applications in...
A binary diffractive optical element, acting as a polarizing beam splitter, is proposed and analyzed...
The goal of this paper is to design a low-loss 1 x 32 Y-branch optical splitter for optical transmis...
A binary diffractive optical element, acting as a polarizing beam splitter, is proposed and analyzed...
A binary diffractive optical element, acting as a polarizing beam splitter, is proposed and analyzed...
In this paper, a reflecting polarizing beam splitter (RPBS) with a metal-multilayer dielectric grati...