首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Chaotic signal generation and coding using a nonlinear micro ring resonator
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Chaotic signal generation and coding using a nonlinear micro ring resonator

机译:使用非线性微环谐振器的混沌信号生成和编码

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摘要

We propose a new digital encoding method using light pulses tracing in a micro ring resonator, where the randomly digital codes can be performed. The chaotic signals can be generated and formed by the logical pulses "1" or "0" by using the signal quantizing method, which can be randomly coded by controlling the specific optical input coupling powers, i.e. coupling coefficient (kappa) and ring radii. Simulation results when the ring radius used is 10.0 mu m, and the other selected parameters are close to the practical device values that are presented and discussed. The random codes can be generated by the random control of coupling powers, which can be transmitted and retrieved via the design filters by the specific clients. For instance, the controlled input power used is between 2.0 and 3.5 mW, whereas the quantizing threshold powers and the traveling roundtrips are 0.3-0.4 mW and 8000-10,000, respectively. In application, the required information can be generated, and the information can be securely transmitted in the public link.
机译:我们提出了一种在微环谐振器中使用光脉冲跟踪的新数字编码方法,其中可以执行随机数字代码。可以通过使用信号量化方法由逻辑脉冲“ 1”或“ 0”产生和形成混沌信号,该信号可以通过控制特定的光输入耦合功率即耦合系数(kappa)和环半径来随机编码。当使用的环半径为10.0μm,并且其他选择的参数接近所介绍和讨论的实际设备值时,仿真结果。可以通过对耦合功率进行随机控制来生成随机码,这些耦合码可以由特定客户端通过设计滤波器进行传输和检索。例如,使用的受控输入功率在2.0到3.5 mW之间,而量化阈值功率和行进往返功率分别为0.3-0.4 mW和8000-10,000。在应用中,可以生成所需的信息,并且可以在公共链路中安全地传输该信息。

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