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Polymer/compound semiconductor hybrid micro resonators with very wide free spectral range

机译:具有非常宽的自由光谱范围的聚合物/化合物半导体混合微谐振器

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In order to keep the Q factor of the micro resonator high, the radius should be many times the operating wavelength. This makes the resonator multi moded and many closely spaced resonances are supported. As a result the free spectral range of the filter is narrow. Although this could be. desirable for some specific applications, in general it is undesirable since it is not possible to filter a specific wavelength over a band of wavelengths. We resolve this difficulty using a hybrid integration technology. For this purpose we use the coupling between a GaAs epilayer removed from its substrate and a polymer channel waveguide as shown . In our previous work we demonstrated the coupling between a GaAs epilayer and a polymer channel waveguide. The structure formed this way is an asymmetric directional coupler, and works as a narrow band filter. In other words coupling in this structure is very wavelength selective.
机译:为了保持微谐振器的Q值较高,半径应为工作波长的许多倍。这使谐振器成为多模谐振器,并且支持许多紧密间隔的谐振。结果,滤波器的自由光谱范围很窄。虽然可以。对于某些特定应用来说是理想的,通常是不希望的,因为不可能在一个波长带上过滤特定的波长。我们使用混合集成技术解决了这一难题。为了这个目的,我们使用从衬底上去除的GaAs外延层和所示的聚合物通道波导之间的耦合。在我们之前的工作中,我们演示了GaAs外延层和聚合物通道波导之间的耦合。以这种方式形成的结构是非对称定向耦合器,并用作窄带滤波器。换句话说,这种结构中的耦合具有很强的波长选择性。

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