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Lijiang 2.4-meter Telescope and its instruments 被引量:6
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作者 Chuan-Jun Wang Jin-Ming Bai +32 位作者 Yu-Feng Fan Ji-Rong Mao Liang Chang Yu-Xin Xin Ju-Jia Zhang Bao-Li Lun Jian-Guo Wang Xi-Liang Zhang Mei Ying Kai-Xing Lu Xiao-Li Wang Kai-Fan Ji Ding-Rong Xiong Xiao-Guang Yu Xu Ding Kai Ye Li-Feng Xing Wei-Min Yi Liang Xu Xiang-Ming Zheng Yuan-Jie Feng Shou-Sheng He Xue-Li Wang Zhong Liu Dong Chen Jun Xu song-nian qin Rui-Long Zhang Hui-song Tan Zhi Li Ke Lou Jian Li Wei-Wei Liu 《Research in Astronomy and Astrophysics》 SCIE CAS CSCD 2019年第10期95-108,共14页
The Lijiang 2.4-meter Telescope(LJT), the largest common-purpose optical telescope in China,has been available to the worldwide astronomical community since 2008. It is located at the Gaomeigu site,Lijiang Observatory... The Lijiang 2.4-meter Telescope(LJT), the largest common-purpose optical telescope in China,has been available to the worldwide astronomical community since 2008. It is located at the Gaomeigu site,Lijiang Observatory(LJO), in the southwest of China. The site has very good observational conditions.During its 10-year operation, several instruments have been equipped on the LJT. Astronomers can perform both photometric and spectral observations. The main scientific goals of LJT include recording photometric and spectral evolution of supernovae, reverberation mapping of active galactic nuclei, investigating the physical properties of binary stars and near-earth objects(comets and asteroids), and identification of exoplanets and all kinds of transients. Until now, the masses of 41 high accretion rate black holes have been measured, and more than 168 supernovae have been identified by the LJT. More than 190 papers related to the LJT have been published. In this paper, the general observation conditions of the Gaomeigu site is introduced at first. Then, the structure of the LJT is described in detail, including the optical, mechanical, motion and control system. The specification of all the instruments and some detailed parameters of the YFOSC is also presented. Finally, some important scientific results and future expectations are summarized. 展开更多
关键词 telescopes Lijiang 2.4-m Telescope-instrumentation photometers-instrumentation spectrographs
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基于10 km弱耦合七芯光纤的信能共传技术
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作者 杨海林 王珊 +5 位作者 彭迪 张振荣 向梦 付松年 李建平 秦玉文 《电子学报》 EI CAS CSCD 北大核心 2024年第8期2557-2562,共6页
随着5G微基站建设密度急剧增加,因采用传统电缆供电方式,5G网络的建设成本和部署难度将大幅提升.光纤信能共传技术作为一种新型供电方式,利用光纤作为传输介质,实现1064 nm能量光和1550 nm信号光的共同传输,同时满足高速信号的5G前传和5... 随着5G微基站建设密度急剧增加,因采用传统电缆供电方式,5G网络的建设成本和部署难度将大幅提升.光纤信能共传技术作为一种新型供电方式,利用光纤作为传输介质,实现1064 nm能量光和1550 nm信号光的共同传输,同时满足高速信号的5G前传和5G微基站的集中化能量管理.本文提出一种基于空分复用技术的光纤信能共传方案,基于10 km弱耦合七芯光纤实验实现了10 W能量光和1.5 Gbit/s速率5G新空口(New Radio,NR)信号光的共同传输,远端通过光电转换效率为35%的光伏电池获得了0.42 W的电功率,可驱动一个远端天线单元(Remote Antenna Unit,RAU),7 h连续监测接收能量光功率的波动范围小于0.4%.与此同时,接收到的5G NR信号误差向量幅度值(Error Vector Magnitude,EVM)仅为0.38%,创纪录地实现了6.3 W·(Gbit/s)·km电功率-容量-距离积. 展开更多
关键词 空分复用 5G前传 高功率激光 光纤信能共传
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