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光导微波源阵列合成时控技术初步研究
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作者 牛昕玥 谷炎然 +4 位作者 楚旭 姚金妹 易木俣 王朗宁 荀涛 《强激光与粒子束》 CAS CSCD 北大核心 2024年第1期23-29,共7页
基于宽禁带光导半导体的固态光导微波源是高功率微波产生的一种新途径,该方案具有功率密度高、频带范围宽等特点,且其低时间抖动特性使其在功率合成方面具有巨大潜力,利用光波束形成网络构建光导微波有源相控阵是光导微波器件迈向实用... 基于宽禁带光导半导体的固态光导微波源是高功率微波产生的一种新途径,该方案具有功率密度高、频带范围宽等特点,且其低时间抖动特性使其在功率合成方面具有巨大潜力,利用光波束形成网络构建光导微波有源相控阵是光导微波器件迈向实用的重要途径。分析了光导微波相控阵系统原理,设计了光导微波真延时网络架构,并构建了差分真延时相控阵和考虑相位随机误差的真延时相控阵的理论模型,对影响功率合成和波束扫描的关键因素开展定量分析和仿真验证。结果表明,对于发射1 GHz信号的n×10阵列,延时均方差在10 ps以下时,指向偏差小于0.13°,峰值增益损耗小于2%;延时步进精度在10 ps以下时,指向偏差小于0.2°,峰值增益损耗小于0.03%。由此提出延时精度指标,为未来更高功率、更大规模的光导微波合成技术发展提供参考。 展开更多
关键词 宽禁带光导半导体 有源相控阵 光波束形成网络 光真延时 时延误差
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Recent progress of parameter-adjustable high-power photonic microwave generation based on wide-bandgap photoconductive semiconductors
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作者 荀涛 牛昕玥 +7 位作者 王朗宁 张斌 姚金妹 易木俣 杨汉武 侯静 刘金亮 张建徳 《Chinese Optics Letters》 SCIE EI CAS CSCD 2024年第1期113-122,共10页
Radio frequency/microwave-directed energy sources using wide bandgap SiC photoconductive semiconductors have attracted much attention due to their unique advantages of high-power output and multi-parameter adjustable ... Radio frequency/microwave-directed energy sources using wide bandgap SiC photoconductive semiconductors have attracted much attention due to their unique advantages of high-power output and multi-parameter adjustable ability.Over the past several years,benefitting from the sustainable innovations in laser technology and the significant progress in materials technology,megawatt-class output power electrical pulses with a flexible frequency in the P and L microwave wavebands have been achieved by photoconductive semiconductor devices.Here,we mainly summarize and review the recent progress of the high-power photonic microwave generation based on the SiC photoconductive semiconductor devices in the linear modulation mode,including the mechanism,system architecture,critical technology,and experimental demonstration of the proposed high-power photonic microwave sources.The outlooks and challenges for the future of multi-channel power synthesis development of higher power photonic microwave using wide bandgap photoconductors are also discussed. 展开更多
关键词 high-power photonic microwave wide bandgap photoconductive semiconductor devices linear modulation multi-parameter adjustable microwave generation multi-channel power synthesis
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