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首页> 外文期刊>American Journal of Optics and Photonics >Simulation of the Effect of Relative Refractive Index for Light Transmission Through Double Cladding Step Index Optical Fibre
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Simulation of the Effect of Relative Refractive Index for Light Transmission Through Double Cladding Step Index Optical Fibre

机译:通过双覆层分置光纤模拟光传输相对折射率的效果

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This work establishes computational analysis of relative refractive index property for light transmission via fiber optics using MATLAB simulation. Optical fiber is a dielectric wave guide which transmits signal with a low attenuation and dispersion at higher bandwidth or data rate. Recent advances in fiber optics introduced a largely new dimension into optical technology with the effect of improving transmission through the application of cladding system. Cladding in fiber communication is importantly applied to ease light transmission in the fiber-core interface by total internal reflection at the boundary between two light propagation region of a typical fiber. Optical fiber communication is a well recognized aspect of optical light transmission where clad fibers of different refractive indices recount for a measurable Numerical aperture and Acceptance angle in fiber networking and communication technology. This has lead to the efficient and effective optical transmission due to the adequate emergence and utilization of optical properties and parameters in optical fiber applications. A double cladding was set for the fiber and a maximum relative refractive index of 2.000% is obtained for an acceptance angle and numerical aperture range of 59-64 and 0.859-0.900 respectively. This implies fast light transmission, high bandwidth and small bending sensitivity for fiber networking with applications in medicine and telecommunication compared to single cladding fiber.
机译:该工作建立了使用MATLAB仿真通过光纤通过光纤光传输的相对折射率特性的计算分析。光纤是一种介电波引导介电波引导介电波引导介质波引导介电波引导件,其以较高的带宽或数据速率以低衰减和色散传输信号。最近的光纤进步在光学技术中引入了一个很大的新尺寸,并通过覆层系统改善传输的效果。纤维通信中的包层主要应用于通过典型光纤的两个光传播区域之间的边界处的全内反射来缓解光纤界面中的光传输。光纤通信是光学光传输的识别方面,其中不同折射率的包层纤维述评用于光纤网络和通信技术中的可测量的数值孔径和接受角度。由于光纤应用中的光学性质和参数的充分出现和利用,这导致了高效且有效的光学传输。为纤维设定双包层,获得的最大相对折射率为2.000%,分别获得59-64和0.859-0.900的接受角和数值孔径范围。这意味着与单个包层纤维相比,在医学和电信中具有快速透光,高带宽和小弯曲灵敏度,与医学和电信中的应用。

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