We present an arrayed waveguide grating multi-wavelength laser (MWL). The device is operated with five wave- length channels of 194 GHz spacing around a central wavelength of 1.57μm. A side mode suppression ratio o...We present an arrayed waveguide grating multi-wavelength laser (MWL). The device is operated with five wave- length channels of 194 GHz spacing around a central wavelength of 1.57μm. A side mode suppression ratio of better than 35 dB for all channels is demonstrated. A very attractive feature of the MWL is that it has been realized by a novel one step regrowth approach to achieve a high quality active and passive interface.展开更多
A four-channel 400 GHz channel spacing InP-based arrayed waveguide grating with a flattened wavelength re- sponse by employing a multimode interference coupler at the input waveguide of the filter is prepared. The fab...A four-channel 400 GHz channel spacing InP-based arrayed waveguide grating with a flattened wavelength re- sponse by employing a multimode interference coupler at the input waveguide of the filter is prepared. The fabricated devices show a flattened spectral response with a broadened 3-dB bandwidth up to 3.5 nm, interchan- nel non-uniformity of 〈0. 7dB and excellent match to the simulation results.展开更多
基金Supported by the National Natural Science Foundation of China under Grant Nos 61274046, 61201103, 61335009 and 61320106013, and the National High Technology Research and Development Program of China under Grant No 2013AA014202.
文摘We present an arrayed waveguide grating multi-wavelength laser (MWL). The device is operated with five wave- length channels of 194 GHz spacing around a central wavelength of 1.57μm. A side mode suppression ratio of better than 35 dB for all channels is demonstrated. A very attractive feature of the MWL is that it has been realized by a novel one step regrowth approach to achieve a high quality active and passive interface.
基金Supported by the National Natural Science Foundation of China under Grant Nos 61274046,61201103,61335009 and61320106013the National Basic Research Program of China under Grant No 2013AA014202
文摘A four-channel 400 GHz channel spacing InP-based arrayed waveguide grating with a flattened wavelength re- sponse by employing a multimode interference coupler at the input waveguide of the filter is prepared. The fabricated devices show a flattened spectral response with a broadened 3-dB bandwidth up to 3.5 nm, interchan- nel non-uniformity of 〈0. 7dB and excellent match to the simulation results.