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Strange attractor in optical logic cells

机译:光学逻辑单元中的奇异吸引子

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摘要

Optical logic cells, employed in several tasks as optical computing or optically controlled switches for photonic switching, offer a very particular behavior when the working conditions are slightly modified. One of the more striking changes occurs when some delayed feedback is applied between one of the possible output gates and a control inpu t. Some of these new phenomena have been studied by us and reported in previous papers. A chaotic behavior is one of the more characteristic results and its possible applications range from communications to cryptography. But the main problem related with this behavior is the binary character of the resulting signal. Most of the nowadays-employed techniques to analyze chaotic signals concern to analogue signals where algebraic equations are possible to obtain. There are no specific tools to study digital chaotic signals. Some methods have been proposed. One of the more used is equivalent to the phase diagram in analogue chaos. The binary signal is converted to hexadecimal and then analyzed. We represented the fractal characteristics of the signal. It has the characteristics of a strange attractor and gives more information than the obtained from previous methods. A phase diagram, as the one obtained by previous techniques, may fully cover its surface with the trajectories and almost no information may be obtained from it. Now, this new method offers the evolution around just a certain area being this lines the strange atractor.
机译:当对工作条件进行轻微修改时,在多个任务中用作光学计算或用于光子交换的光控开关的光学逻辑单元会提供非常特殊的行为。当在可能的输出门之一和控制输入之间施加一些延迟的反馈时,就会发生更明显的变化之一。我们已经研究了其中一些新现象,并在以前的论文中进行了报道。混沌行为是更具特征性的结果之一,其可能的应用范围从通信到加密。但是与此行为有关的主要问题是所得信号的二进制特性。当今使用的大多数分析混沌信号的技术都与模拟信号有关,在模拟信号中可以得到代数方程。没有研究数字混沌信号的特定工具。已经提出了一些方法。其中之一是等效于模拟混沌中的相位图。将二进制信号转换为十六进制,然后进行分析。我们表示信号的分形特征。它具有吸引子的特征,并且比以前的方法提供更多的信息。如通过先前技术获得的相图,该相图可以用轨迹完全覆盖其表面,并且几乎不能从其获得任何信息。现在,这种新方法可以围绕某个特定区域提供进化,因为这是奇怪的引子线。

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