Research and Simulation of Negative Group Delay and Superluminal Propagation

Yueyao Wang, Zhongsheng Wang, Xinzhuo Li, Han Shen
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Abstract

Abstract In recent years, negative group delay circuits have attracted much attention due to their propagation characteristics and wide application prospects. In the history of human exploration, the exploration of the speed of light has never stopped. The theory of relativity points out that the speed of light in vacuum is the limit speed of signal propagation. However, it is found through research that phase velocity and group velocity appear faster than the speed of light, which does not violate the causal relationship. This paper first introduces the related concepts of negative group delay and superluminal phenomenon, the second focuses on the principle of negative group delay and superluminal phenomenon in-depth analysis and research, finally using the principle of Multisim software, the bandwidth of two different job, different structure of circuit design, the virtual simulation experiment to negative group delay phenomenon and measurement data. It is of great significance to explore the field of faster-than-light and negative group delay in today's rapidly developing information age, and it can try to meet the high requirements for signal transmission. In the future, the interdisciplinary research direction of this research topic also has great development space.
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负群延迟与超光速传播的研究与仿真
近年来,负群延迟电路因其传播特性和广阔的应用前景而备受关注。在人类的探索历史上,对光速的探索从未停止过。相对论指出光在真空中的传播速度是信号传播的极限速度。然而,通过研究发现,相速度和群速度出现的速度比光速快,这并不违反因果关系。本文首先介绍了负群延迟和超光速现象的相关概念,其次着重对负群延迟和超光速现象的原理进行了深入的分析和研究,最后利用Multisim软件的原理,对两种不同工作带宽、不同结构的电路进行了设计,对负群延迟现象进行了虚拟仿真实验和测量数据。在当今飞速发展的信息时代,探索超光速和负群延迟领域具有重要意义,可以尝试满足对信号传输的高要求。未来,本研究课题的跨学科研究方向也有很大的发展空间。
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