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Superluminescent Diode Monolithically Integrated with Novel Y-Branch by Bundle Integrated Waveguide for Fiber Optic Gyroscope

机译:用于光纤陀螺仪的束集成波导的小型Y分支整体集成的超级发光二极管

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We have developed a novel InP-based, ridge-waveguide photonic integrated circuit (PIC), which consists of a 1.1-um wavelength Y-branch optical waveguide with low loss and improved far field pattern and a 1.3-um wavelength strained InGaAsP-InP multiple quantum-well superluminescent diode, with bundle integrated guide (BIG) as the scheme for monolithic integration. The simulations of BIG and Y-branches show low losses and improved far-field patterns, based on the beam propagation method (BPM). The amplified spontaneous emission of the device is up to 10 mW at 120 raA with no threshold and saturation. Spectral characteristics of about 30 nm width and less than 1 dB modulation are achieved using the built-in anti-lasing ability of Y-branch. The beam divergence angles in horizontal and vertical directions are optimized to as small as 12°×8°, resulting in good fiber coupling. The compactness, simplicity in fabrication, good superluminescent performance, low transmission loss and estimated low coupling loss prove the BIG and Y-branch method to be a feasible way for integration and make the photonic integrated circuit of Y-branch and superluminescent diode an promising candidate for transmitter and transceiver used in fiber optic gyroscope.
机译:我们开发了一种基于新型的基于INP的脊波导光子集成电路(PIC),其由具有低损耗的1.1-UM波长Y分支光学波导和远场模式的低损耗和1.3-UM波长紧张的INGAASP-INP组成多量子阱高级发光二极管,具有束整合指导(大)作为单片集成的方案。基于光束传播方法(BPM),大型和Y分支的模拟显示出低损耗和改善的远场模式。该装置的扩增的自发发射在120 RAA中高达10mW,没有阈值和饱和度。使用Y分支的内置抗激光能力实现约30nm宽度和小于1dB调制的光谱特性。水平和垂直方向上的光束发散角度优化至12°×8°,导致良好的光纤耦合。紧凑,简单的制造,良好的超级发光性能,低传输损耗和估计的低耦合损失证明了大型和Y分支方法是一种可行的方式,使Y分支和超级发光二极管的光子集成电路成为有前途的候选者用于光纤陀螺仪中使用的发射器和收发器。

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