Wang Hui, Zhang Rongjun, Yu Cun
Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences, 3888 Dong Nan Hu Road, 130033, Changchun, China.
Fudan University, 220 Handan Road, Yangpu District, 200433, Shanghai, China.
Light Sci Appl. 2023 May 5;12(1):108. doi: 10.1038/s41377-023-01147-w.
The industrial revolutions of steam power, electric power and digital power have been three key steps in the development of science and technology. Now, the fourth industrial revolution has quietly begun, a revolution which will combine the powers of modern technologies such as the Internet, industrial digitalization and virtual reality to trigger a major change of science and technology, and sensor technology is of vital importance to this process.A famous physicist specialized in infrared and semiconductors, our featured guest not only discovered the intrinsic absorption spectra of the optical transition between narrow gap semiconductor mercury cadmium telluride bands, but also developed the theory of the band structure of mercury cadmium telluride and the theory of optical transition, put forward a series of expressions such as the gap width of mercury cadmium telluride bands, making outstanding contributions.Born into a scholarly family, he inherited a love for knowledge, especially physics and enjoyed all the challenges it presented. In research, he believes that technological development should be guided by the laws of physics. As a teacher, he asks his students to focus on the depth and breadth of learning. In life, he is famed for being easygoing, modest, well-mannered and meticulous.He is Academician Junhao Chu of the Shanghai Institute of Technical Physics (SITP), Chinese Academy of Sciences (CAS). Please follow Light People and discover what challenges Prof. Chu had to overcome in the study of mercury cadmium telluride.
蒸汽动力、电力和数字动力的工业革命是科技发展的三个关键步骤。如今,第四次工业革命已悄然开启,这场革命将融合互联网、工业数字化和虚拟现实等现代技术的力量,引发科技的重大变革,而传感器技术在这一进程中至关重要。
我们的特邀嘉宾是一位专门研究红外和半导体的著名物理学家,他不仅发现了窄禁带半导体碲镉汞能带间光跃迁的本征吸收光谱,还发展了碲镉汞的能带结构理论和光跃迁理论,提出了一系列诸如碲镉汞能带隙宽度等表达式,做出了杰出贡献。
他出生于一个书香门第,继承了对知识的热爱,尤其热爱物理,并享受物理带来的所有挑战。在研究中,他认为技术发展应以物理规律为导向。作为一名教师,他要求学生注重学习的深度和广度。在生活中,他以随和、谦逊、举止得体和一丝不苟而闻名。
他就是中国科学院上海技术物理研究所的褚君浩院士。请跟随《光人》一起探寻褚教授在碲镉汞研究中必须克服的挑战。