Larger Laurent, Lacourt Pierre-Ambroise, Poinsot Stéphane, Hanna Marc
UMR CNRS FEMTO-ST 6174/Optics Dpt, Université de Franche-Comté, Besançon, France.
Phys Rev Lett. 2005 Jul 22;95(4):043903. doi: 10.1103/PhysRevLett.95.043903. Epub 2005 Jul 21.
An optoelectronic nonlinear delay oscillator seeded by a pulsed laser source is used to experimentally demonstrate a new transition scenario for the general class of delay differential dynamics, from continuous to discrete time behavior. This transition scenario differs from the singular limit map, or adiabatic approximation model that is usually considered. The transition from the map to the flow is observed when increasing the pulse repetition rate. The mechanism of this transition opens the way to new interpretations of the general properties of delay differential dynamics, which are universal features of many other scientific domains. We anticipate that the nonlinear delay oscillator architecture presented here will have significant applications in chaotic communication systems.
由脉冲激光源驱动的光电非线性延迟振荡器被用于通过实验展示延迟微分动力学一般类别的一种新的转变情形,即从连续时间行为到离散时间行为的转变。这种转变情形不同于通常所考虑的奇异极限映射或绝热近似模型。当增加脉冲重复率时,可观察到从映射到流的转变。这种转变机制为延迟微分动力学一般性质的新解释开辟了道路,而这些性质是许多其他科学领域的普遍特征。我们预计此处提出的非线性延迟振荡器架构将在混沌通信系统中具有重要应用。