Supporting column-supported echo wall mode photonics device, preparation method thereof and use of device
A whispering gallery mode and photonics technology, applied in the field of photonics devices, can solve the problems of inability to realize arrayed multi-microcavity structure, difficult to realize photonics circuit, complicated process, etc., and achieve high repeatability, low cost, and preparation process. simple effect
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Embodiment 1
[0058] Example 1: Dye-doped microdisk with support structure produces whispering gallery mode micron laser
[0059] Such as Figure 4 As shown, the whispering gallery mode micro-laser material is a micro-disk array structure (1) with a supporting structure provided by the inventor, and the pulse laser (2) (430 nanometers) of a titanium-doped sapphire laser is used as the pump light, and the spot diameter is 30 Micron, with a light intensity of 145 microwatts, irradiating a single part of the microdisk array structure supported by pillars, so that the dye doped in it emits light to form a gain. The overflow light of the microdisk cavity is collected through a 50 times objective lens (3), and the excitation light is filtered out by an optical filter (4) (520 nm long pass) to obtain the multimode laser (5) generated by the whispering gallery mode microcavity.
[0060] The preparation method of the microdisk array with support structure used in the method is as follows:
[0061]...
Embodiment 2
[0063] Example 2: Microdisk coupled cavity with pillar support realizes single-mode laser
[0064] The material used is the micro-disk array structure provided by the inventor, and the pulsed laser (430 nanometers) of a titanium-doped sapphire laser is used as the pump light, and the spot diameter is 40 microns. The dye in it emits light to form the gain. The overflow light of the microdisk cavity is collected through a 50x objective lens, and the excitation light is filtered out with a filter (520 nm long pass) to obtain the laser spectrum of the whispering gallery mode microcavity. By adjusting the diameters of the two coupling disks and using the "vernier effect" formed by the coupling of two different microdisk cavities, the resonant modes at the same wavelength position are selectively amplified, and the laser mode selection function is realized to obtain a single-mode laser.
[0065] The preparation method of the coupled microdisk array with support structure used in th...
Embodiment 3
[0068] Example 3: Multi-microdisk array used in coupled cavity optical waveguide components
[0069] The material used is the microdisk coupled cavity optical waveguide structure (including 9 microdisks) supported by pillars provided by the inventor, and the pulse laser (430 nanometers) of a titanium-doped sapphire laser is used as the pump light, and the diameter of the light spot is 20 microns. The entire coupled microdisk array structure is irradiated at 45 degrees, so that the dye doped in it emits light to form a gain. The overflow light of the microdisk cavity at the end is collected through a 50 times objective lens, and the excitation light is filtered out with a filter (520 nm long pass). The laser signal of the microdisk at the beginning can be collected at the end through the conduction of 8 microdisks.
[0070] The preparation method of the multi-microdisk array used in this method is as follows:
[0071] The preparation method of the coupled microdisk array with ...
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