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Mode control and direct modulation for waveguide-coupled square microcavity lasers

机译:波导耦合方形微腔激光器的模式控制和直接调制

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Lasing mode control and direct modulation characteristics have been investigated for waveguide-coupled unidirectional-emission square microcavity lasers. A quasi-analytical model is introduced to analyze the mode field distributions and quality (Q) factors for the confined modes inside the square optical microcavities with directly coupled waveguide, where high-Q whispering-gallery-like (WG-like) modes are induced by the mode coupling between doubly-degenerate modes. AlGaInAs/InP waveguide-coupled unidirectional-emission square microcavity lasers are fabricated by using standard planar technology, and electrically-injected lasing is realized at room temperature. The lasing modes are controlled by properly designing the lasing cavity, output waveguide and injection pattern. Dual-transverse-mode lasing with a tunable wavelength interval from 0.25 to 0.39 run is realized by using a spatially selective current injection to modulate the refractive index, as the mode field distributions of different transverse are spatially separated. The wavelength interval can be further increased to a few nanometers by reducing the cavity size and replacing the flat sidewalls with circular arcs. The field distributions of WG-like modes distribute uniformly in square microcavity, which avoid the burning-induced carrier diffusion in high-speed direct modulation. A small-signal modulation 3dB bandwidth exceeding 16 GHz, and an open eye diagram at 25 Gb/s are demonstrated for the high-speed direct modulated square microcavity laser.
机译:激射模式控制和直接调制特性已被研究用于波导耦合单向发射正方形微腔激光器。一个准分析模型被引入以分析与直接耦合波导,所述正方形光学微内的模场分布和质量(Q)的因素的限制模式,其中高Q回音壁样(WG-等)模式引起的由模式双退化模式之间的耦合。的AlGaInAs /的InP波导耦合单向发射正方形微腔激光器是通过使用标准平面工艺制作,并电注入激射在室温下实现。激射模式通过适当地设计激光腔中,输出波导和喷射模式控制。双横模为0.25至0.39与运行的可调谐波长间隔发射激光的通过使用空间选择性电流注入来调节折射率来实现,因为不同的横向模场分布在空间上分离。的波长间隔可通过减小所述腔的尺寸和与圆弧代替平坦侧壁进一步提高到几纳米。的WG-像模式在正方形微腔均匀地分布电场分布,这避免在高速直接调制燃烧引起的载流子扩散。小信号调制-3dB带宽超过16千兆赫,并在25千兆打开眼图/ s的证明了高速直接调制的方微腔激光器。

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