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首页> 外文期刊>Photonics Journal, IEEE >Simultaneous Optical Half-Adder and Half-Subtracter Using a Single-Slot Waveguide
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Simultaneous Optical Half-Adder and Half-Subtracter Using a Single-Slot Waveguide

机译:使用单缝波导同时进行光学加法器和减法器

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摘要

We propose a simple approach for simultaneous optical half-adder and half-subtracter using a single-slot waveguide that offers tight light confinement and enhanced nonlinearity. By exploiting the parametric depletion effect of twin degenerate four-wave mixing processes in the slot waveguide, we simulate 160-Gbit/s half-adder (A + B) and half-subtracter (A - B, B - A) and characterize the operation performance in terms of quality Q factor, extinction ratio ER, and eye opening EO. Two different nonlinear materials are considered as the slot region for comparison. One is silicon-nanocrystal (Si-nc) with Kerr nonlinear index of refraction (n2) of 4.8 ×10-17 m2/W and two-photon absorption (TPA) coefficient (βTPA) of 7 ×10-11 m/W at 1550 nm, and the other is a specific polydiacetylene, poly-[2,4 hexadiyne -1,6 diol-bis-( p -toluene sulfonate)] (PTS) with n2 = 6.25 ×10-17 m2/W and βTPA ≈ 0 at 1550 nm. PTS slot waveguide features superior performance of half-adder and half-subtracter compared with Si-nc slot waveguide under the same waveguide length and input signal power. Moreover, we study the performance dependence on the waveguide length and input power, providing an easy-to-follow theoretical basis for achieving the desired performance of half-adder and half-subtracter.
机译:我们提出了一种使用单缝波导同时进行光学半加法器和半减法器的简单方法,可提供严格的光限制和增强的非线性。通过利用缝隙波导中双简并四波混频过程的参数耗尽效应,我们模拟了160 Gbit / s的半加法器(A + B)和半减法器(A-B,B-A)并对其特性进行了描述。质量Q因子,消光比ER和睁眼EO方面的操作性能。两种不同的非线性材料被视为用于比较的缝隙区域。一种是Kerr非线性折射率(n2)为4.8×10 -17 m 2 / W和双光子吸收(TPA)的硅纳米晶体(Si-nc) )系数(βTPA)在1550 nm时为7×10 -11 m / W,另一个是特定的聚二乙炔,聚-[2,4己二炔-1,6二醇-双-(p -甲苯磺酸盐]](PTS)在1550 nm处n2 = 6.25×10 -17 m 2 / W和βTPA≈0。在相同的波导长度和输入信号功率下,PTS缝隙波导具有比Si-nc缝隙波导更好的半加法器和半减法器性能。此外,我们研究了性能对波导长度和输入功率的依赖性,为实现所需的半加法器和半减法器性能提供了易于理解的理论基础。

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