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High-Power High-Brightness Ridge-Waveguide Tapered Diode Lasers at 14xx nm

机译:14xx nm高功率高亮度脊波导管锥形二极管激光器

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High-power spatially single-mode diode lasers at 1.4 - 1.5 μm wavelength are of interest as pump lasers for Raman and rare-earth doped fiber amplifiers as well as for material processing and for Light Detection and Ranging (LIDAR) at eye-safe wavelengths. A cost-efficient way to realize high-power high-brightness devices is the tapered resonator concept. We demonstrate InGaAsP/InP based diode lasers with compressively strained quantum wells and wavelengths around 1480 nm which were grown by solid source MBE. From broad area lasers with variations in quantum well number and waveguide layer thickness, parameters for the logarithmic gain model are deduced. With their implementation in 2-dimensional BPM simulations, an optimized resonator geometry is derived. Devices employ a 500 μm ridge section followed by a 2000 μm taper section with 6° angle. Continuous-wave (cw) output powers reach more than 1.5 W. Beam quality is characterized in terms of near field and far field distribution, M~2, and astigmatism. An excellent agreement is found between measurement and simulation. For narrow-linewidth operation, devices are provided with anti-reflection coatings on both facets and spectrally stabilized with an external grating. We achieve 0.7 W single mode power and a side mode suppression ratio (SMSR) of 42 dB. Reliability is tested in terms of facet stability and lifetime. Pulsed measurements reveal a power stability up to more than 5 MW/cm~2. From cw aging tests at 1 W output power, lifetimes of about 6,000 h are extrapolated.
机译:波长为1.4-1.5μm的高功率空间单模二极管激光器作为拉曼和稀土掺杂光纤放大器以及材料加工以及对眼睛安全的波长的光检测和测距(LIDAR)的泵浦激光器引起了人们的关注。实现高功率高亮度器件的一种经济高效的方式是锥形谐振器概念。我们展示了基于InGaAsP / InP的二极管激光器,该激光器具有压缩应变量子阱,其波长约为1480 nm,由固体源MBE生长。从量子阱数量和波导层厚度变化的广域激光器中,推导出对数增益模型的参数。通过在二维BPM仿真中的实现,得出了优化的谐振器几何形状。器件采用500μm脊形截面,然后是具有6°角的2000μm锥形截面。连续波(cw)输出功率达到1.5 W以上。光束质量的特征在于近场和远场分布,M〜2和像散。在测量和仿真之间找到了一个极好的协议。对于窄线宽操作,设备在两个面上均设有抗反射涂层,并通过外部光栅在光谱上稳定下来。我们达到0.7 W单模功率和42 dB的旁模抑制比(SMSR)。在方面稳定性和寿命方面对可靠性进行了测试。脉冲测量显示功率稳定性高达5 MW / cm〜2以上。通过在1 W输出功率下进行的CW老化测试,可以推断出约6,000 h的寿命。

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