万超 1郝浩 2赵清源 1,2,*刘浩 1[ ... ]吴培亨 1,2
作者单位
摘要
1 网络通信与安全紫金山实验室,江苏 南京 211111
2 南京大学超导电子学研究所,江苏 南京 210023
3 中国空间技术研究院通信与导航卫星总体部,北京 100094
针对无线光通信中的收发技术,从空间光通信和水下光通信两方面梳理相关的研究进展,根据不同场景从通信波段、调制方式、光电探测器三个方面总结无线光通信收发技术的发展趋势,分析单光子探测在无线光通信中的应用前景,并报道了本研究组将串联型超导纳米线单光子探测器应用于空间光通信取得的结果,为相关研究工作的开展提供借鉴和思路。
光通信 无线光通信 空间光通信 水下光通信 光电探测器 单光子探测 调制解调 
激光与光电子学进展
2022, 59(5): 0500001
作者单位
摘要
兰州交通大学电子信息工程学院, 甘肃兰州 730070
在基于非正交多址接入技术 (NOMA)的多用户多中继协作中继网络中, 为优先满足混叠信号中的时延敏感信息的服务质量 (QoS)需求, 对功率因子进行了简单分析, 进而找到了关于信道增益的解码限制条件。在给定中继的情况下, 根据解码限制条件建立用户集合, 进而找到可以使高QoS信号速率最大化的用户中继对作为最佳“用户 -中继”来传递信号。并且对该“用户 -中继”选择方案下的系统中断概率的表达式进行推导并求出了其渐进式。仿真结果验证了推导结果的正确性, 系统的中断概率随着节点数目的增多而降低, 而当信噪比趋于无穷时, 系统的分集增益取决于用户数目和中继数目。且与已有文献进行对比, 本文提出的用户中继匹配方案的中断性能相对较好。
非正交多址接入 协作中继 功率分配 用户中继对 中断概率 Non-Orthogonal Multiple Access cooperative relay power allocation use-relay pair outage probability 
太赫兹科学与电子信息学报
2020, 18(4): 586
Author Affiliations
Abstract
1 College of Advanced Interdisciplinary Studies, National University of Defense Technology, Changsha 410073, China
2 State Key Laboratory of High Performance Computing, College of Computer, National University of Defense Technology, Changsha 410073, China
3 National Innovation Institute of Defense Technology, Academy of Military Sciences PLA China, Beijing 100071, China
Active control of metamaterial properties with high tunability of both resonant intensity and frequency is essential for advanced terahertz (THz) applications, ranging from spectroscopy and sensing to communications. Among varied metamaterials, plasmon-induced transparency (PIT) has enabled active control with giant sensitivity by embedding semiconducting materials. However, there is still a stringent challenge to achieve dynamic responses in both intensity and frequency modulation. Here, an anisotropic THz active metamaterial device with an ultrasensitive modulation feature is proposed and experimentally studied. A radiative-radiative-coupled PIT system is established, with a frequency shift of 0.26 THz in its sharp transparent windows by polarization rotation. Enabled by high charge-carrier mobility and longer diffusion lengths, we utilize a straightforwardly spin-coated MAPbI3 film acting as a photoactive medium to endow the device with high sensitivity and ultrafast speed. When the device is pumped by an ultralow laser fluence, the PIT transmission windows at 0.86 and 1.12 THz demonstrate a significant reduction for two polarizations, respectively, with a full recovery time of 561 ps. In addition, we numerically prove the validity that the investigated resonator structure is sensitive to the optically induced conductivity. The hybrid system not only achieves resonant intensity and frequency modulations simultaneously, but also preserves the all-optical-induced switching merits with high sensitivity and speed, which enriches multifunctional subwavelength metamaterial devices at THz frequencies.
Photonics Research
2019, 7(9): 09000994

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