InP-based quantum dash broadband emitters

C. L. Tan, C. Chen, J. Hwang, B. Ooi
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Abstract

Semiconductor broadband light sources are greatly in demand for highly-sensitive sensing, spectroscopy, optical telecommunications, eye-safe low-speckle sources for flash lidar and high resolution bio-imaging particularly optical coherence tomography (OCT). In this paper, we report on the observation of broadband lasing action from the InAs/InAlGaAs quantum dash (Qdash) structure. This novel device exhibits lasing action with emission wavelength coverage over 60nm at the center wavelength around ∼1.60 µm. By applying the quantum-dash intermixing (QDI) technique to the same material structure, we have successfully tuned the center lasing wavelength of the Qdash broadband laser to 1.54 µm and broadened its emission coverage over 80 nm, making it an attractive source for many novel applications in optical communications. The intrinsic response of Qdash lasers under optical modulation has been studied.
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基于inp的量子冲刺宽带发射器
半导体宽带光源在高灵敏度传感、光谱学、光通信、闪光激光雷达和高分辨率生物成像(特别是光学相干断层扫描(OCT))中对眼睛安全的低散斑光源的需求很大。本文报道了从InAs/InAlGaAs量子冲刺(Qdash)结构中观察到的宽带激光作用。这种新型器件具有激光作用,在中心波长约1.60µm处,发射波长覆盖超过60nm。通过将量子dash混合(QDI)技术应用于相同的材料结构,我们成功地将Qdash宽带激光器的中心激光波长调谐到1.54 μ m,并将其发射覆盖范围扩大到80 nm以上,使其成为光通信中许多新颖应用的有吸引力的光源。研究了Qdash激光器在光调制下的本征响应。
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