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Electroabsorption modulated semiconductor optical amplifier monolithically integrated with spot-size converters

机译:与点尺寸转换器单片集成的电吸收调制半导体光放大器

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We have demonstrated an electroabsorption modulator (EAM) and semiconductor optical amplifier (SOA) monolithically integrated with novel dual-waveguide spot-size converters (SSCs) at the input and output ports for low-loss coupling to planar light-guide circuit silica waveguide or cleaved single-mode optical fiber. The device is fabricated by means of selective-area MOVPE growth (SAG), quantum well intermixing (QWI) and asymmetric twin waveguide (ATG) technologies with only three steps low-pressure MOVPE growth. For the device structure, in SOA/EAM section, double ridge structure was employed to reduce the EAM capacitances and enable high bit-rate operation. In the SSC sections, buried ridge stripe (BRS) were incorporated. Such a combination of ridge, ATG and BRS structure is reported for the first time in which it can take advantage of both easy processing of ridge structure and the excellent mode characteristic of BRS. At the wavelength range of 1550-1600 nm, lossless operation with extinction ratios of 25 dB DC and more than 10 GHz 3-dB bandwidth is successfully achieved. The beam divergence angles of the input and output ports of the device are as small as 8.0° x 12.6°, resulting in 3.0 dB coupling loss with cleaved single-mode optical fiber.
机译:我们已经展示了在输入和输出端口上与新型双波导点尺寸转换器(SSC)单片集成的电吸收调制器(EAM)和半导体光放大器(SOA),用于低损耗耦合至平面光导电路石英波导或裂开的单模光纤。该器件是通过选择性区域MOVPE生长(SAG),量子阱混合(QWI)和非对称双波导(ATG)技术制造而成的,仅进行了三步低压MOVPE生长。对于器件结构,在SOA / EAM部分,采用双脊结构来减小EAM电容并实现高比特率操作。在南南合作部分,并入了掩埋的山脊条纹(BRS)。首次报道了这种脊,ATG和BRS结构的组合,其中它既可以利用易于加工的脊结构,又可以利用BRS的出色模态特性。在1550-1600 nm的波长范围内,成功实现了消光比为25 dB DC和超过10 GHz 3-dB带宽的无损工作。该设备的输入和输出端口的光束发散角小至8.0°x 12.6°,从而导致单模光纤开裂产生3.0 dB的耦合损耗。

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