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Integrated Tunable Quantum-Dot Laser for Optical Coherence Tomography in the 1.7 Wavelength Region

机译:集成可调量子点激光器,用于1.7波长区域的光学相干层析成像

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摘要

In this paper, we present the design and characterization of a monolithically integrated tunable laser for optical coherence tomography in medicine. This laser is the first monolithic photonic integrated circuit containing quantum-dot amplifiers, phase modulators, and passive components. We demonstrate electro-optical tuning capabilities over 60 nm between 1685 and 1745 nm, which is the largest tuning range demonstrated for an arrayed waveguide grating controlled tunable laser. Furthermore, it demonstrates that the active-passive integration technology designed for the 1550 nm telecom wavelength region can also be used in the 1600–1800 nm region. The tunable laser has a 0.11 nm effective linewidth and an approximately 0.1 mW output power. Scanning capabilities of the laser are demonstrated in a free space Michelson interferometer setup where the laser is scanned over the 60 nm in 4000 steps with a 500 Hz scan frequency. Switching between two wavelengths within this 60 nm range is demonstrated to be possible within 500 ns.
机译:在本文中,我们介绍了用于医学光学相干断层扫描的单片集成可调激光器的设计和特性。该激光器是第一个包含量子点放大器,相位调制器和无源元件的单片光子集成电路。我们展示了1685至1745 nm之间60 nm以上的电光调谐能力,这是针对阵列波导光栅控制的可调激光器展示的最大调谐范围。此外,它表明,为1550 nm电信波长区域设计的主动-被动集成技术也可以在1600-1800 nm区域中使用。可调激光器的有效线宽为0.11 nm,输出功率约为0.1 mW。激光的扫描能力在自由空间迈克尔逊干涉仪设置中得到了证明,该设备在500 nm扫描频率下以4000步扫描60 nm。事实证明,在此60 nm范围内的两个波长之间切换可能在500 ns内完成。

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