Wavelength tunable and directly modulated distributed Bragg reflector (DBR) lasers with butt-joint technology are designed, fabricated and characterized. The DBR laser consists of a gain section and a DBR section. T...Wavelength tunable and directly modulated distributed Bragg reflector (DBR) lasers with butt-joint technology are designed, fabricated and characterized. The DBR laser consists of a gain section and a DBR section. To increase the electrical isolation between the gain section and the DBR section, parts of a p-doped material in the isolation region are etched off selectively. Over 2kΩ isolation resistance is realized ultimately without the need of ion implantation, which simplifies the fabrication process. The laser exhibits high speed modulation with a large tunable range. The 3dB direct modulation bandwidth of the device is over 8GHz in a 12nm tunable range. This widely tunable DBR laser with the simple structure is promising as a colorless light source for the next-generation time and wavelength division multiplexed passive optical network (TWDM-PON) systems.展开更多
为有效解决时分波分复用无源光网络(time and wavelength division multiplexed passive optical network,TWDM-PON)中因采用节能算法而导致的业务时延恶化问题,提出一种考虑业务QoS的光线路终端(optical line terminal,OLT)节能算法。...为有效解决时分波分复用无源光网络(time and wavelength division multiplexed passive optical network,TWDM-PON)中因采用节能算法而导致的业务时延恶化问题,提出一种考虑业务QoS的光线路终端(optical line terminal,OLT)节能算法。通过建立针对局端设备光线路终端的新型能耗模型,使发射机和接收机能够独立地关闭或开启,从而在上下行业务不对称的情况下能够最大化地降低光线路终端能耗;通过区分业务、调整轮询周期的大小以及工作收发机的数目,保证不同业务QoS的要求。仿真表明,算法在保证业务QoS的前提下,最大化地降低了TWDM-PON中OLT的能耗。展开更多
基金Supported by the National Key Project under Grant No 2016YFB0402301the National High Technology Research and Development Program of China under Grant No 2013AA014502the National Natural Science Foundation of China under Grant Nos 61635010,61320106013,61474112,61321063 and 61274071
文摘Wavelength tunable and directly modulated distributed Bragg reflector (DBR) lasers with butt-joint technology are designed, fabricated and characterized. The DBR laser consists of a gain section and a DBR section. To increase the electrical isolation between the gain section and the DBR section, parts of a p-doped material in the isolation region are etched off selectively. Over 2kΩ isolation resistance is realized ultimately without the need of ion implantation, which simplifies the fabrication process. The laser exhibits high speed modulation with a large tunable range. The 3dB direct modulation bandwidth of the device is over 8GHz in a 12nm tunable range. This widely tunable DBR laser with the simple structure is promising as a colorless light source for the next-generation time and wavelength division multiplexed passive optical network (TWDM-PON) systems.
文摘为有效解决时分波分复用无源光网络(time and wavelength division multiplexed passive optical network,TWDM-PON)中因采用节能算法而导致的业务时延恶化问题,提出一种考虑业务QoS的光线路终端(optical line terminal,OLT)节能算法。通过建立针对局端设备光线路终端的新型能耗模型,使发射机和接收机能够独立地关闭或开启,从而在上下行业务不对称的情况下能够最大化地降低光线路终端能耗;通过区分业务、调整轮询周期的大小以及工作收发机的数目,保证不同业务QoS的要求。仿真表明,算法在保证业务QoS的前提下,最大化地降低了TWDM-PON中OLT的能耗。