Optical element using liquid crystal having optical isotropy
An isotropic, liquid crystal technology, applied in optical components, optics, nonlinear optics, etc., can solve problems such as slow response speed
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Embodiment approach 1
[0074] In Embodiment 1 of the present invention, a diffraction element and an optical attenuator are proposed and described as optical elements. figure 1 It is a cross-sectional structural view conceptually showing the diffraction element according to Embodiment 1 of the present invention. figure 1 Among them, the diffractive element 10 is constituted by forming films of transparent electrodes 3 and 4 on one surface of the transparent substrates 5 and 6, respectively, and between the transparent electrodes 3 and 4, isotropic substantially rectangular parallelepipeds are periodically arranged in parallel. Refractive index solid material, forming the grid 2A, and the area between the isotropic refractive index solid material forming the grid 2A, forming the diffraction grating 1 occupied by the isotropic refractive index liquid crystal 2B, formed by the transparent substrate 5, 6 The isotropic refractive index liquid crystal 2B is sealed with the sealing member 7 .
[0075] H...
Embodiment approach 2
[0101] In Embodiment 2 of the present invention, an element having a composition different from that of the diffraction element and the optical attenuator in Embodiment 1 is proposed and described as an optical element. Figure 8 is a cross-sectional view of a diffraction element according to Embodiment 2 of the present invention, Figure 9 is a top view of the diffraction element. In the diffraction element 40 according to Embodiment 2 of the present invention, transparent electrode 4 is removed from diffraction element 10 according to Embodiment 1 of the present invention, and patterned transparent electrodes 3A and 3B are provided instead of transparent electrode 3 .
[0102] Here, transparent electrodes 3A, 3B are formed so as to be sandwiched between transparent substrate 5 and grid 2A. The other components are the same as those of the diffraction element 10 according to Embodiment 1 of the present invention, and their descriptions are omitted. Therefore, with figure ...
Embodiment approach 3
[0110] In Embodiment 3 of the present invention, a variable wavelength filter is proposed as an optical element and described. Figure 10 It is a diagram showing a conceptual side cross-sectional structure of a variable wavelength filter according to Embodiment 3 of the present invention. Figure 10 Among them, the wavelength variable filter 50 is a filter called "liquid crystal standard type wavelength variable filter", which has a structure in which a pair of transparent substrates 56A and 56B are provided to face each other, and are substantially parallel to each other. A pair of reflective mirrors 53A and 53B forming an optical resonator, an isotropic refractive index liquid crystal 51 whose refractive index changes isotropically, and transparent electrodes 52A and 52B are arranged on transparent substrates 56A and 56B, and in 1 An isotropic refractive index liquid crystal 51 and a transparent and solid optical medium layer 58 (hereinafter, referred to as a solid optical m...
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Abstract
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