• Study On Optical Communications
  • Vol. 49, Issue 6, 1 (2023)
Xinquan ZHANG1,2, Xi XIAO1,2,*, and Shaohua YU1,3
Author Affiliations
  • 1China Information Communication Technologies Group Corporation, Wuhan 430074, China
  • 2National Key Laboratory of Optical Communication Technologies and Networks, Wuhan 430074, China
  • 3Pengcheng Laboratory, Shenzhen 518000, China
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    DOI: 10.13756/j.gtxyj.2023.06.001 Cite this Article
    Xinquan ZHANG, Xi XIAO, Shaohua YU. Technological Progress of Information Optoelectronics Microelectronization and Discussion on Its Development[J]. Study On Optical Communications, 2023, 49(6): 1 Copy Citation Text show less
    The development trend of information technology
    Fig. 1. The development trend of information technology
    The microelectronization of the optoelectronics
    Fig. 2. The microelectronization of the optoelectronics
    The scale of the optoelectronic integration[31]
    Fig. 3. The scale of the optoelectronic integration[31]
    The monolithic opto-electronic integrated 100 Gbit/s transceiver of the Sicoya Company[37]
    Fig. 4. The monolithic opto-electronic integrated 100 Gbit/s transceiver of the Sicoya Company[37]
    The evolution of the optical transceiver of switching engine[31]
    Fig. 5. The evolution of the optical transceiver of switching engine[31]
    The elementary system of opto-electronic computing basing on Si[48]
    Fig. 6. The elementary system of opto-electronic computing basing on Si[48]
     电子光子
    特性波动性,粒子性波动性,粒子性
    自旋1/21
    静止质量m00
    运动质量me/c2
    电荷-e0
    粒子间作用
    粒子特性费米子玻色子
    时间特性有时间不可逆性有一定的类时间可逆性
    空间特性高度的空间局域性不具空间局域性
    传播特性不能在自由空间传播能在自由空间传播
    取向特性两个自旋方向两个偏振方向
    用途能量载体,信息载体能量载体,信息载体
    Table 1. The physical properties of photons and electrons[1-2]
    Xinquan ZHANG, Xi XIAO, Shaohua YU. Technological Progress of Information Optoelectronics Microelectronization and Discussion on Its Development[J]. Study On Optical Communications, 2023, 49(6): 1
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