Zhang Rui, de S Cavalcante Hugo L D, Gao Zheng, Gauthier Daniel J, Socolar Joshua E S, Adams Matthew M, Lathrop Daniel P
Department of Physics and Center for Nonlinear and Complex Systems, Duke University, Durham, North Carolina 27708, USA.
Phys Rev E Stat Nonlin Soft Matter Phys. 2009 Oct;80(4 Pt 2):045202. doi: 10.1103/PhysRevE.80.045202. Epub 2009 Oct 27.
We observe deterministic chaos in a simple network of electronic logic gates that are not regulated by a clocking signal. The resulting power spectrum is ultrawide band, extending from dc to beyond 2 GHz. The observed behavior is reproduced qualitatively using an autonomously updating Boolean model with signal propagation times that depend on the recent history of the gates and filtering of pulses of short duration, whose presence is confirmed experimentally. Electronic Boolean chaos may find application as an ultrawide-band source of radio waves.
我们在一个不受时钟信号调节的简单电子逻辑门网络中观察到了确定性混沌。由此产生的功率谱是超宽带的,从直流延伸到2GHz以上。使用一个自主更新的布尔模型定性地再现了观察到的行为,该模型中的信号传播时间取决于门的近期历史以及对短持续时间脉冲的滤波,其实验存在性得到了证实。电子布尔混沌可能作为一种超宽带无线电波源得到应用。