A frequency divider using interacting self‐sustained pulses in a tunnel‐diode‐oscillator lattice

A frequency divider using interacting self‐sustained pulses in a tunnel‐diode‐oscillator lattice
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在隧道二极管振荡器晶格中使用相互作用的自持脉冲的分频器

DOI:
10.1002/cta.3310
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发表时间:
2022
影响因子:
2.3
通讯作者:
Narahara Koichi
Narahara Koichi
中科院分区:
工程技术3区
文献类型:
--
作者:
H.Park;S.Akasaka;Y.Tasaka;Y.Murai;Narahara Koichi

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讨论了一种有效的分频方法,即利用在一维隧道二极管振子晶格中传播的相互作用的自持续孤立波。当连续输入两个脉冲时,发现存在一个阈值分离,低于该阈值分离后,后面的脉冲在途中被显著衰减消失,对前导脉冲的影响很小。这种现象导致了具有高分割比的高效分频器,这需要相对较少的晶格单元。在本研究中,我们通过几个实验验证说明了自持续脉冲相互作用的基本动力学和分频的主要操作。
An effective method for frequency division, which uses interacting self‐sustained solitary waves propagating in a one‐dimensional tunnel‐diode oscillator lattice, is discussed. When two pulses are input successively, it is found that there is a threshold separation below which the following pulse is significantly attenuated to disappear on the way, which only slightly influences the leading pulse. This phenomenon results in an efficient frequency divider with a high division ratio, which requires a relatively small number of lattice cells. In this study, we illustrate the fundamental dynamics of the self‐sustained pulse interactions and principal operation of frequency division with several experimental validations.
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