1998Journal of Modern OpticsRequires access

Multiple solutions provided by analytical synthesis in admittance matching; application to dichroic mirrors

Andreea Dinca, Paul T. Miclea, Voicu Lupei, T. Skettrup, M. Dinca

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Abstract

The paper studies the application of the complete admittancematching in the design of dichroic mirrors. The matching stacks were analytically synthesized and all solutions with one, two and three periods were investigated in order to obtain a large-transmission (LT) band and to preserve the high-reflectance (HR) band. The method is applied in the design of two dichroic mirrors, a one-side matched mirror with HR at 1·44 μm and L T at 1·064 μm and a two-sided matched mirror with HR at 1·064 μm and L T at 0·809 μm.

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What this paper is about

The paper studies the application of the complete admittancematching in the design of dichroic mirrors. The matching stacks were analytically synthesized and all solutions with one, two and three periods were investigated in order to obtain a large-transmission (LT) band and to preserve the high-reflectance (HR) band. The method is applied in the design of two dichroic mirrors, a one-side matched mirror with HR at 1·44 μm and L T at 1·064 μm and a two-sided matched mirror with HR at 1·064 μm and L T at 0·809 μm.

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Available abstract

The paper studies the application of the complete admittancematching in the design of dichroic mirrors. The matching stacks were analytically synthesized and all solutions with one, two and three periods were investigated in order to obtain a large-transmission (LT) band and to preserve the high-reflectance (HR) band. The method is applied in the design of two dichroic mirrors, a one-side matched mirror with HR at 1·44 μm and L T at 1·064 μm and a two-sided matched mirror with HR at 1·064 μm and L T at 0·809 μm.

Key concepts: Dichroic glass, Dichroic filter, Optics, Admittance, Transmission (telecommunications), Matching (statistics), Materials science, Optoelectronics

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