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Optical-analog-to-digital conversion based on successive-like approximations in octagonal-shape photonic crystal ring resonators

机译:基于八角形光子晶体环形谐振器中类似逐次逼近的光-模-数转换

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Implementing intensity-dependent Kerr-like nonlinearity in octagonal-shape photonic crystal ring resonators (OSPCRRs), a new class of optical analog-to-digital converters (ADCs) with low power consumption is presented. Due to its size dependent refractive index, Silicon (Si) nanocrystal is used as nonlinear medium in the proposed ADC. Coding system of optical ADC is based on successive-like approximations which requires only one quantization level to represent each single bit, despite of conventional ADCs that require at least two distinct levels for each bit. Each is representing bit of optical ADC is formed by vertically alignment of double rings of OSPCRRs (DR-OSPCRR) and cascading in number of DR-OSPCRR, forms an in bit ADC. Investigating different parameters of DR-OSPCRR such as refractive indices of rings, lattice refractive index, and coupling coefficients of waveguideto-ring and ring-to-ring, the ADC's threshold power is tuned. Increasing the number of bits of ADC, increases the overall power consumption of ADC. One can arrange to have any number of bits for this ADC, as long as the power levels are treated carefully. Finite difference time domain (FDTD) in-house codes were used to evaluate the ADC's effectiveness. (C) 2017 Elsevier Ltd. All rights reserved.
机译:通过在八角形光子晶体环形谐振器(OSPCRR)中实现强度相关的类Kerr非线性,提出了一种新型的低功耗光学模数转换器(ADC)。由于其与尺寸有关的折射率,所提出的ADC中将硅(Si)纳米晶体用作非线性介质。光学ADC的编码系统基于类似连续的近似值,尽管传统的ADC每位至少需要两个不同的电平,但仅需一个量化电平即可表示每个单个位。每个代表光的ADC的位是由OSPCRRs的双环(DR-OSPCRR)的垂直对齐并串联多个DR-OSPCRR形成的,形成位ADC。通过研究DR-OSPCRR的不同参数,例如环的折射率,晶格折射率以及波导环和环对环的耦合系数,可以调整ADC的阈值功率。增加ADC的位数会增加ADC的总体功耗。只要认真对待功率电平,就可以为该ADC设置任意数量的位。内部有限时域(FDTD)内部代码用于评估ADC的有效性。 (C)2017 Elsevier Ltd.保留所有权利。

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