A STUDY ON THE CONNECTION BETWEEN UNIVERSITY PHYSICS AND PROFESSIONAL COURSES: TAKING BLACKBODY RADIATION AND ANTENNA NOISE TEMPERATURE AS AN EXAMPLE
LI Zhiqiang;ZHANG Jieqiu;WANG Weiyu;LI Lei;YAN Mingbao;FAN Qi;
Abstract:
This paper investigates the connection between college physics courses and professional courses related to radio communication. First, it reviews the historical development of thermal noise research, clarifies the origin of the concept of noise temperature, and provides a general definition of noise temperature. Next, taking the antenna as an electromagnetic wave transducer, it derives the quantitative expression for the antenna thermal noise power spectral density by combining the theory of blackbody radiation with Kirchhoff's law of thermal radiation. Based on revealing the physical mechanism of antenna thermal noise, the paper elaborates on the logical construction and physical connotations of the concept of antenna noise temperature. Teaching practice has shown that integrating the above ideas into teaching deepens students' understanding of the relevant physical knowledge. This study aims to deepen students' understanding of the blackbody radiation theory in college physics courses and provide a reference for the teaching of radio communication professional courses. By extending the basic physical theory to the field of radio communication, it demonstrates the bridging role of basic physics courses in the curriculum system, which is conducive to cultivating students' interdisciplinary comprehensive literacy and innovative thinking abilities.
Key Words: course connection;blackbody radiation;antenna thermal noise;noise temperature;power spectral density
Foundation:
Authors: LI Zhiqiang;ZHANG Jieqiu;WANG Weiyu;LI Lei;YAN Mingbao;FAN Qi;
References:
- [1]张诗按.建设具有专业特色的大学物理慕课教学改革研究[J].教育教学论坛,2021,(23):49-52.ZHANG S A. Study on the MOOC teaching reform of college physics with professional features[J]. Education and Teaching Forum, 2021,(23):49-52.(in Chinese)
- [2]李东,段利兵,白晓军,等.国防特色高校大类培养背景下“课堂+网络+科创”三位一体大学物理教学模式实践[J].大学物理,2024(43):43-48.LI D, DUAN L B, BAI X J, et al. Practice of classroom+network+science and technology innovation trinity teaching model of college physics under the background of large category training in national defense features university[J]. College Physics, 2024(43):43-48.(in Chinese)
- [3]李春燕,余同普,彭小洹.大学物理中军事案例教学的设计与探索——以枪炮后坐力为例[J].物理与工程,2023,(5):23-27.LI C Y, YU T P, PENG X H. Design and exploration of military case teaching in college physics—Taking the recoil of guns and cannons as an example[J]. Physics and Engineering, 2023,(5):23-27.(in Chinese)
- [4]满玉红,程南璞,覃礼钊.基于材料类专业的大学物理课程的教学改革探索[J].西南师范大学学报(自然科学版),2014,39(5):193-195.MAN Y H, CHENG N P, QIN L Z. Exploration on the teaching reform of college physics course based on materialsrelated majors[J]. Journal of Southwest China Normal University(Natural Science Edition), 2014, 39(5):193-195.(in Chinese)
- [5]张欣,叶灵伟,李淑华等.航空雷达原理[M].北京:国防工业出版社,2012:78-79.ZHANG X, YE L W, LI S H, et al. Principles of airborne radar[M]. Beijing:National Defence Industry Press, 2012:78-79.(in Chinese)
- [6]刘学观,郭辉萍.微波技术与天线[M].2版.西安:西安电子科技大学出版社,2006:142.LIU X G, GUO H P. Microwave technology and antennas[M]. 2nd ed. Xi'an:Xidian University Press, 2006:142.(in Chinese)
- [7]李莉.天线与电波传播[M].北京:科学出版社,2009:51-55.LI L. Antenna and radio wave propagation[M]. Beijing:Science Press, 2009:51-55.(in Chinese)
- [8]约翰克劳斯,马赫夫克.天线[M].3版.章文勋,译.北京:电子工业出版社,2011:320,22.KRAUS J D, MARHEFKA R J. Antennas:For all applications[M]. 3rd ed. Translated by ZHANG W X. Beijing:Publishing House of Electronics Industry, 2011:320, 22.(in Chinese)
- [9]埃因托芬W,埃因托芬W F,范德霍斯特W,等.张紧的弦的布朗运动[J].Physica,1925, 5:358-360.EINTHOVEN W, EINTHOVEN W F, VAN DER HORST W, et al. Brownsche Bewegingen Van Een Gespannen Snaar[J]. Physica, 1925, 5:358-360.(in Chinese)
- [10]JOHNSON J B. Thermal agitation of electricity in conductors[J]. Nature, 1927, January 8:50-51.
- [11]NYQUIST H. Thermal agitation of electric charge in conductors[J]. Physical Review, 1928, 32:110-113.
- [12]聂在平.天线工程手册[M].成都:电子科技大学出版社,2014:1-2,17-19.NIE Z P. Antenna engineering handbook[M]. Chengdu:Chengdu University of Electronic Science and Technology Press Co., Ltd., 2014:1-2, 17-19.(in Chinese)
- [13]周希朗.微波技术与天线[M].南京:东南大学出版社,2015:11-12,479-481.ZHOU X L. Microwave technology and antennas[M].Nanjing:Southeast University Press, 2015:11-12, 479-481.(in Chinese)
- [14]曹则贤.黑体辐射公式的多种推导及其在近代物理构建中的意义(Ⅰ)[J].物理,2021,50(11):761-766.CAO Z X. Multiple derivations of the blackbody radiation formula and its significance in the construction of modern physics(Ⅰ)[J]. Physics, 2021, 50(11):761-766.(in Chinese)
- [15]东南大学等七所工科院校.物理学:下册[M].北京:高等教育出版社,2020:324-334.Seven Engineering Colleges including Southeast University. Physics:VolumeⅡ[M]. Beijing:Higher Education Press, 2020:324-334.(in Chinese)
- [16]赵凯华,罗蔚茵.量子物理[M].北京:高等教育出版社,2001:11-13.ZHAO K H, LUO W Y. Quantum physics[M]. Beijing:Higher Education Press, 2001:11-13.(in Chinese)
- [17]PENZIAS A A, WILSON R W. A Measurement of excess antenna temperature at 4080Mc/s[J]. The Astrophysical Journal, 1965, 142:419-421.
- [18]DICKE R, et al. Cosmic black-body radiation[J]. The Astrophysical Journal, 1965:414-419.
- LI Zhiqiang
- ZHANG Jieqiu
- WANG Weiyu
- LI Lei
- YAN Mingbao
- FAN Qi
- Fundamentals Department
- Air Force Engineering University
- LI Zhiqiang
- ZHANG Jieqiu
- WANG Weiyu
- LI Lei
- YAN Mingbao
- FAN Qi
- Fundamentals Department
- Air Force Engineering University