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课程学分/学时
Course Credit/Hours
大学物理、电磁场理论、固体物理学、半导体物理、电路。
本课程让研究生对电子科学与技术领域的最新研究和技术发展动态有系统了解,具体对微电子学与
固体电子学、物理电子学与光电子学、电磁场与微波技术、电路与系统、通信工程等相关领域的材
料、器件、系统、传感检测等二级学科相关领域的前沿问题和技术进展有所了解,拓展研究生的知
识面,掌握在本学科领域发现问题和分析问题的方法,为下一步科研选题甚至论文工作奠定基础。
采用多媒体辅助的讲授法为主开展教学,以讲座报告形式授课,分 8 个专题讲座,主讲教师均由在
某一学科领域长期从事科学研究的学科带头人或学术骨干担任。
第一章 电子科学与技术学科前沿方向一(包含但不限于:新型二维材料
电子器件/光学材料)
第二章 电子科学与技术学科前沿方向二(包含但不限于:5G 通信/ROF
技术)
第三章 电子科学与技术学科前沿方向三(包含但不限于:发光材料/液晶
光子学/器件/光谱学)
第四章 电子科学与技术学科前沿方向四(包含但不限于:THz 成像/全息
技术/医学图像处理)
第五章 电子科学与技术学科前沿方向五(包含但不限于:电磁场/天线/
微波技术)
第六章 电子科学与技术学科前沿方向六(包含但不限于:传感/检测/海
洋监测/分布式传感)
第七章 电子科学与技术学科前沿方向七(包含但不限于:集成电路/半导
体器件/微流控技术)
第八章 电子科学与技术学科前沿方向八(包含但不限于:能量采集技术/
模拟与混合信号集成电路/光子集成技术)