One-dimensional magnetic photonic crystal for achieving broadband optical isolation
A photonic crystal, broadband light technology, applied in optics, nonlinear optics, instruments, etc., can solve problems such as suboptimal isolation effect and difficult preparation
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Embodiment 1
[0035] Such as figure 2 The first composite structure S of the present invention shown 1 =S 0 / M / S 0 , the magnetron sputtering coating method can be used on the optical substrate according to the structure S 1 The three films were deposited sequentially, totaling 83 layers. When the external magnetic field is parallel to the direction of the optical path, the first composite structure S of the present invention1 The fluctuation curves of transmittance and Faraday rotation angle near the central wavelength are as follows Figure 4 shown. In order to make the first composite structure S of the present invention 1 get 45 o The Faraday rotation angle of , we need to rotate the external magnetic field in the horizontal direction, the first composite structure S 1 The values of transmittance and Faraday rotation angle vary with the rotation angle of the applied magnetic field as follows: Figure 5 shown. Rotate the applied magnetic field horizontally to the direction of...
Embodiment 2
[0037] Such as image 3 The second composite structure S of the present invention shown 2 =S 0 / M / S 0 / M / S 0 , the magnetron sputtering coating method can be used on the optical substrate according to the structure S 2 The three films were deposited sequentially, for a total of 125 layers. When the external magnetic field is parallel to the direction of the optical path, the first composite structure S of the present invention 2 The fluctuation curves of transmittance and Faraday rotation angle near the central wavelength are as follows Figure 7 shown. In order to make the first composite structure S of the present invention 2 get 45 o The Faraday rotation angle of , we need to rotate the external magnetic field in the horizontal direction, the first composite structure S 2 The values of transmittance and Faraday rotation angle vary with the rotation angle of the applied magnetic field as follows: Figure 8 shown. Rotate the applied magnetic field horizontally to...
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