A method for the design of an all-dielectric nonpolarizing prism beam splitter utilizing the principle of frustrated total internal reflection is reported. The nonpolarizing condition for a prism beam splitter is discussed, and some single layer design examples are elaborated. The concept can be applied to a wide range of wavelengths and arbitrary transmittance values, and with the help of a computer design program examples of 400-700 nm, T-p = T-p = 0.5 +/- 0.01, with incident angles of 45 degrees and 62 degrees are given. In addition, the sensitivity and application of the design are also discussed. (c) 2006 Optical Society of America
A unified design for a 1 x 2 beam splitter of dielectric rectangular transmission gratings under the...
We theoretically investigated the design of a metal-mirror-based reflecting polarizing beam splitter...
Designs of non-polarizing beamsplitters with ratios of R:T = 50:50 and 30:70 over the spectral range...
A pair of light beams that have orthogonal polarizations and equal intensity can be generated throu...
A novel concept of polarization beam splitting with high polarization extinction ratio is proposed b...
A method is described for the design of a thin-film all-dielectric polarizing beam splitter in which...
The problem of designing nonpolarizing beam splitters with as broad a spectral band as practical has...
Optimal optical parameters of the beam splitter that is used in the division-of-amplitude photopolar...
An efficient beam splitter for a Michelson interferometer can be made from a pair of prisms, using t...
Optical beamsplitters often consist of repeated pairs of high and low index quarter-wave layers. At ...
Beam splitters are an indispensable part of optical measurements and applications. We propose a dyna...
A design procedure is presented for a near-optimal, single-layer-coated prism beam splitter that ser...
A polarizing beam splitter is described that is optimised not for the maximum possible extinction r...
Light passing through a photonic crystal can undergo a negative or a positive refraction. The two re...
[[abstract]]In this work, a theoretical analysis on the design of the beam splitter (BS) based on th...
A unified design for a 1 x 2 beam splitter of dielectric rectangular transmission gratings under the...
We theoretically investigated the design of a metal-mirror-based reflecting polarizing beam splitter...
Designs of non-polarizing beamsplitters with ratios of R:T = 50:50 and 30:70 over the spectral range...
A pair of light beams that have orthogonal polarizations and equal intensity can be generated throu...
A novel concept of polarization beam splitting with high polarization extinction ratio is proposed b...
A method is described for the design of a thin-film all-dielectric polarizing beam splitter in which...
The problem of designing nonpolarizing beam splitters with as broad a spectral band as practical has...
Optimal optical parameters of the beam splitter that is used in the division-of-amplitude photopolar...
An efficient beam splitter for a Michelson interferometer can be made from a pair of prisms, using t...
Optical beamsplitters often consist of repeated pairs of high and low index quarter-wave layers. At ...
Beam splitters are an indispensable part of optical measurements and applications. We propose a dyna...
A design procedure is presented for a near-optimal, single-layer-coated prism beam splitter that ser...
A polarizing beam splitter is described that is optimised not for the maximum possible extinction r...
Light passing through a photonic crystal can undergo a negative or a positive refraction. The two re...
[[abstract]]In this work, a theoretical analysis on the design of the beam splitter (BS) based on th...
A unified design for a 1 x 2 beam splitter of dielectric rectangular transmission gratings under the...
We theoretically investigated the design of a metal-mirror-based reflecting polarizing beam splitter...
Designs of non-polarizing beamsplitters with ratios of R:T = 50:50 and 30:70 over the spectral range...