Silicon-based magneto-optic isolator based on mode filter and preparation method
A mode filtering and filter technology, applied in the field of silicon-based optoelectronics integration, can solve the problems of lack of optical isolator integration methods and integration obstacles, and achieve the effect of high absorption loss and high isolation
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[0043] The invention also discloses a method for preparing a silicon-based magneto-optical isolator based on a mode filter, which includes the following steps:
[0044] Etching on SOI silicon wafer to form a strip-shaped silicon waveguide structure;
[0045] Forming the mode filter area through the secondary photolithography and etching process;
[0046] Depositing a transparent conductive oxide layer on the etched waveguide structure;
[0047] Epitaxially grow a layer of silicon film;
[0048] Depositing a transparent conductive oxide layer on the top layer of the mode filter area, and depositing an iron garnet film on the back end of the strip-shaped silicon waveguide structure to prepare a magneto-optical polarization Faraday rotator;
[0049] Deposit a layer of SiO 2 The thin film serves as the cladding layer on the device.
[0050] Preferably, the strip-shaped silicon waveguide is a rectangular waveguide;
[0051] Preferably, the strip-shaped silicon waveguide has a width of 400-2000 ...
Embodiment 1
[0061] Such as figure 1 As shown, the present invention includes a mode filter and a Faraday rotator. The mode filter adopts a strip-shaped silicon waveguide structure embedded and covered with a transparent conductive oxide layer. The Faraday rotator adopts an iron garnet strip with a magneto-optical material doped with rare earth elements. The mode filter is divided into port 1 (ie the first port), the mode filter area, and port 2 (ie the second port) along the length direction; the Faraday rotator is divided into port 1 (ie the third port) along the length direction Port) and port 2 (ie the fourth port);
[0062] The input signal including the transverse electric field mode transmitted in the forward direction is input from port 1 of the mode filter. After entering the mode filter area, it is output from port 2 and enters port 1 of the Faraday rotator, which is implemented in the Faraday rotator. 45° polarization rotation is output from port 2; the reflected reverse transmissi...
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