Interaction of Self-Sustained Pulses in Tunnel-Diode Oscillator Lattices

Interaction of Self-Sustained Pulses in Tunnel-Diode Oscillator Lattices
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隧道二极管振荡器晶格中自持脉冲的相互作用

DOI:
10.1155/2021/5027127
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发表时间:
2021
期刊:
Math. Prob. Eng.
影响因子:
--
通讯作者:
K. Narahara
K. Narahara
中科院分区:
--
文献类型:
--
作者:
Alvin Christopher Varquez;Khanh Ngoc Do;I Dewa Gede Junnaedhi;MANABU KANDA;K. Narahara

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隧道二极管(TD)振荡器中的一维晶格支持由增益和衰减之间的平衡产生的自持孤立脉冲。通过将约化理论应用于器件的模型方程,发现在晶格中运动的两个相对较远的脉冲受到排斥相互作用的相互影响。这一特性可有效地用于均衡脉冲位置以实现抖动消除。特别是,当两个脉冲在一个小的闭合格子中旋转时,它们在渐近极限处均匀分开。因此,晶格环路可以为获得低相噪多相振荡信号提供一个有效的平台。在这项工作中,研究了TD振荡器晶格中两个自维持脉冲之间的相互作用,并通过使用测试面包板晶格进行多次测量来验证脉冲间相互作用的性质。
A one‐dimensional lattice in tunnel‐diode (TD) oscillators supports self‐sustained solitary pulses resulting from the balance between gain and attenuation. By applying the reduction theory to the device’s model equation, it is found that two relatively distant pulses moving in the lattice are mutually affected by a repulsive interaction. This property can be efficiently utilized in equalizing pulse positions to achieve jitter elimination. In particular, when two pulses rotate in a small, closed lattice, they separate evenly at the asymptotic limit. As a result, the lattice loop can provide an efficient platform to obtain low‐phase‐noise multiphase oscillatory signals. In this work, the interaction between two self‐sustained pulses in a TD‐oscillator lattice is examined, and the properties of interpulse interaction are validated by conducting several measurements using a test breadboarded lattice.
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发表时间: 2008
影响因子: 2.3
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