Surface plasmon polaritons optical waveguide of nanowire arrays
A surface plasmon and nanowire array technology, applied in the field of ion polariton optical waveguide, can solve the problem of inability to balance the mode field confinement capability and transmission loss, and achieve the effect of low transmission loss, strong mode field confinement capability, and easy integration.
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example 1
[0035] Example 1: The center point of the metal nanowire and the center point of the high refractive index medium nanowire are at the same horizontal position (the Y coordinate is the same) (corresponding to two lines between the center of the two high refractive index medium nanowires and the center of the metal nanowire respectively The inner vertex angle of the included angle is 180 degrees)
[0036] figure 2 It is a schematic diagram of the structure of the nanowire array surface plasmon optical waveguide described in Example 1. 201 is a cylindrical metal nanowire (the end surface is round), and its width is w m , The height is h m , The refractive index is n m ; 202 is the cylindrical high refractive index dielectric nanowire on the left side of 201 (that is, along the negative direction of the X-axis) (the end surface is circular), and its refractive index is n d , The width is w g , The height is h g , G is the minimum distance from 201 to the right edge of 202; 203 is the...
example 2
[0044] Example 2: The center point of the metal nanowire and the center point of the high refractive index dielectric nanowire are not at the same horizontal position (the Y coordinate is different)
[0045] Figure 7 It is a schematic diagram of the structure of the nanowire array surface plasmon optical waveguide of Example 2. 701 is a cylindrical metal nanowire (the end surface is round), and its width is w m , The height is h m , The refractive index is n m 702 is the cylindrical high refractive index dielectric nanowire on the left side of 701 (that is, along the negative direction of the X-axis) (the end surface is circular), and its refractive index is n d , The width is w g , The height is h g , G is the minimum distance from the right edge of 701 to 702, the angle between the line between the center of 701 and 702 and the horizontal line passing through the center of 701 is θ; 703 is the cylindrical high refraction on the right side of 701 (that is, along the positive dire...
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