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High brilliance photonic band crystal lasers

机译:高亮度光子带水晶激光器

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High concentration of optical power in a narrow exit angle is extremely important for numerous applications of laser diodes, for example, for low-cost fiber pumping and coupling, material processing, direct frequency conversion, etc. Lasers based on the longitudinal photonic band crystal (PBC) concept allow a robust and controllable extension of the fundamental mode over a thick multi-layer waveguide region to achieve a very large vertical optical mode spot size and, consequently, a very narrow vertical beam divergence. Many undesirable effects like beam filamentation, lateral multimode operation and catastrophic optical mirror damage (COMD) are strongly reduced. 650 nm GaInP/GaAlInP PBC lasers show narrow far field pattern (FWHM~7°) stable up to the highest output powers. Differential efficiency up to 85% is demonstrated. Total single mode output power as high as 150 mW is achieved in 4 μm-wide stripes in continuous wave operation, being limited by COMD due to not passivated facets. The lateral far field FWHM is 4 degrees. 840 nm GaAs/GaAlAs PBC lasers show a vertical beam divergence of 8° (FWHM) and a high differential efficiency up to 95% (L=500 μm). A total single mode CW power approaches 500 mW for 1 mm-long 4 μm-wide stripes devices at ~500 mA current, being COMD-limited. The lateral far field FWHM is 5 degrees. Another realization of a longitudinal PBC laser allows lasing in a single high-order vertical mode, a so-called tilted mode, which provides wavelength selectivity and substantially extends the possibility to control the thermal shift of the lasing wavelength. In a multilayer laser structure, where the refractive index of each layer increases upon temperature, it is possible to reach both a red shift of the lasing wavelength for some realizations of the structures, and a blue shift for some others. Most important, the absolute thermal stabilization of the lasing wavelength of a semiconductor laser can be realized.
机译:对于许多激光二极管的许多应用,例如,对于低成本光纤泵送和耦合,材料处理,直接频率转换等来基于纵向光子带晶体( PBC)概念允许在厚的多层波导区域上实现基本模式的强大和可控扩展,以实现非常大的垂直光学模式光斑尺寸,从而实现非常窄的垂直光束发散。强烈减少了许多不希望的效果,横向多模和灾难性光学镜损坏(COMD)。 650nm GainP / Gaalinp PBC激光器显示窄的远场模式(FWHM〜7°)稳定到最高输出功率。差异效率高达85%。总单模输出功率高达150 mW,在连续波操作中以4μm宽条纹实现,由于不钝化的刻面而受到COMD的限制。横向远场FWHM为4度。 840nm GaAs / Gaalas PBC激光器显示出8°(FWHM)的垂直光束分流和高达95%(L =500μm)的高差分效率。总单模CW电力在〜500 mA电流下接近1mm长的4μm宽条纹设备,是COMD限制。横向远场FWHM为5度。纵向PBC激光器的另一个实现允许在单个高阶垂直模式下激光,所谓的倾斜模式,该倾斜模式提供波长选择性并且基本上延伸了控制激光波长的热偏移的可能性。在多层激光结构中,在温度上增加每个层的折射率的情况下,可以达到激光波长的红色偏移,以用于结构的一些实现,以及其他一些的蓝色偏移。最重要的是,可以实现半导体激光器的激光波长的绝对热稳定。

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