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High-power single-mode antiresonant reflecting optical waveguide-type vertical-cavity surface-emitting lasers

机译:高功率单模反谐振反射光波导型垂直腔面发射激光器

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摘要

Antiresonant reflecting optical waveguide (ARROW) techniques are employed in vertical cavity surface emitting lasers (VCSELs) to achieve high-power single-mode emission. Using the effective-index method and fiber mode approximation, the cold-cavity lateral modal behavior for the circular shaped ARROW VCSEL demonstrates significant reduction of radiation loss from that of a single antiguide, while maintaining strong discrimination against high-order modes. The circular-waveguide is created by selective chemical etching and two-step metal-organic chemical vapor deposition growth, with proton implantation used to confine the current injection to the low-index core region. A single-mode CW power of 7.1 mW has been achieved from an 8 Μm diameter ARROW device (index step Δn = 0.05, emission at Λ0 = 980 nm) with a far-field FWHM of 10°. Larger aperture (12 Μm) devices exhibit multimode operation at lower drive currents with a maximum single-mode continuous-wave output power of 4.3 mW.
机译:反谐振反射光波导(ARROW)技术用于垂直腔表面发射激光器(VCSEL)中,以实现高功率单模发射。使用有效折射率方法和光纤模态逼近,圆形ARROW VCSEL的冷腔横向模态行为证明了与单个反导相比辐射损失显着降低,同时保持了对高阶模态的强烈区分。圆形波导是通过选择性化学刻蚀和两步金属-有机化学气相沉积生长产生的,质子注入用于将电流注入限制在低折射率纤芯区域。直径为8微米的ARROW装置(折射率步长Δn= 0.05,在Λ0 = 980 nm处发射)的远场FWHM为10°,可实现7.1 mW的单模CW功率。大孔径(12μm)的器件在较低的驱动电流下表现出多模工作,最大单模连续波输出功率为4.3 mW。

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