Sharing the advantages of high optical power,high efficiency and design flexibility in a compact size,quantum cascade lasers(QCLs)are excellent mid-to-far infrared laser sources for gas sensing,infrared spectroscopic,...Sharing the advantages of high optical power,high efficiency and design flexibility in a compact size,quantum cascade lasers(QCLs)are excellent mid-to-far infrared laser sources for gas sensing,infrared spectroscopic,medical diagnosis,and defense applications.Metalorganic chemical vapor deposition(MOCVD)is an important technology for growing high quality semiconductor materials,and has achieved great success in the semiconductor industry due to its advantages of high efficiency,short maintenance cycles,and high stability and repeatability.The utilization of MOCVD for the growth of QCL materials holds a significant meaning for promoting the large batch production and industrial application of QCL devices.This review summarizes the recent progress of QCLs grown by MOCVD.Material quality and the structure design together determine the device performance.Research progress on the performance improvement of MOCVD-grown QCLs based on the optimization of material quality and active region structure are mainly reviewed.展开更多
提出一种应用于无线局域网(WLAN)的低剖面单馈双频宽带微带天线.该天线辐射贴片由三个矩形连接桥连接内外两块辐射贴片构成,并在U型外贴片上加载一根短路探针,通过加载连接桥和短路探针拓展天线的工作带宽.微带天线介质基片由上下两层FR...提出一种应用于无线局域网(WLAN)的低剖面单馈双频宽带微带天线.该天线辐射贴片由三个矩形连接桥连接内外两块辐射贴片构成,并在U型外贴片上加载一根短路探针,通过加载连接桥和短路探针拓展天线的工作带宽.微带天线介质基片由上下两层FR4介质板和中间空气层组成,剖面高度为0.042λ.测试结果表明,天线回波损耗大于10 d B的工作带宽分别为2.39~2.50 GHz和5.02~5.87 GHz,在两频段中心频率2.45和5.5 GHz时增益分别为6.14和8.82 d Bi.该天线剖面低,增益高,能够完全覆盖IEEE 802.11a/b/n/ac标准所规定的工作频段,具有较好的工程应用价值.展开更多
基金supported by National Key Research and Development Program of China (Grant No.2021YFB3201900)National Natural Science Foundation of China (Grant Nos.61991430,62235016)+1 种基金Youth Innovation Promotion Association of CAS (Grant Nos.2022112,Y2022046)Key projects of the Chinese Academy of Sciences (Grant No.XDB43000000)。
文摘Sharing the advantages of high optical power,high efficiency and design flexibility in a compact size,quantum cascade lasers(QCLs)are excellent mid-to-far infrared laser sources for gas sensing,infrared spectroscopic,medical diagnosis,and defense applications.Metalorganic chemical vapor deposition(MOCVD)is an important technology for growing high quality semiconductor materials,and has achieved great success in the semiconductor industry due to its advantages of high efficiency,short maintenance cycles,and high stability and repeatability.The utilization of MOCVD for the growth of QCL materials holds a significant meaning for promoting the large batch production and industrial application of QCL devices.This review summarizes the recent progress of QCLs grown by MOCVD.Material quality and the structure design together determine the device performance.Research progress on the performance improvement of MOCVD-grown QCLs based on the optimization of material quality and active region structure are mainly reviewed.
文摘提出一种应用于无线局域网(WLAN)的低剖面单馈双频宽带微带天线.该天线辐射贴片由三个矩形连接桥连接内外两块辐射贴片构成,并在U型外贴片上加载一根短路探针,通过加载连接桥和短路探针拓展天线的工作带宽.微带天线介质基片由上下两层FR4介质板和中间空气层组成,剖面高度为0.042λ.测试结果表明,天线回波损耗大于10 d B的工作带宽分别为2.39~2.50 GHz和5.02~5.87 GHz,在两频段中心频率2.45和5.5 GHz时增益分别为6.14和8.82 d Bi.该天线剖面低,增益高,能够完全覆盖IEEE 802.11a/b/n/ac标准所规定的工作频段,具有较好的工程应用价值.