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Single-mode 140 nm swept light source realized by using SSG-DBR lasers

机译:通过使用SSG-DBR激光器实现单模140nm扫描光源

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We demonstrate a single-mode and fast wavelength swept light source by using Superestrucuture grating distributed Bragg reflector (SSG-DBR) lasers for use in optical frequency-domain refiectometry optical coherence tomography. The SSG-DBR lasers provide single-mode operation resulting in high coherency. Response of the wavelength tuning is very fast; several nanoseconds, but there was an unintentional wavelength drift resulting from a thermal drift due to injecting tuning current. The dri ft unfortunately requires long time to converge; more than a few milliseconds. For suppressing the wavelength drift, we introduced Thermal Drift Compensation mesa (TDC) parallel to the laser mesa with the spacing of 20 μm. By controlling TDC current to satisfy the total electric power injected into both the laser mesa and the TDC mesa, the thermal drift can be suppressed. In the present work, we fabricated 4 wavelength's kinds of SSG-DBR laser, which covers respective wavelength band; S-band (1496-1529 nm), C-band (1529-1564 nm), L~--band (1564-1601 nm), and L~+-band (1601-1639). We set the frequency channel of each laser with the spacing 6.25 GHz and 700 channels. The total frequency channel number is 2800 channels (700 ch × 4 lasers). We simultaneously operated the 4 lasers with a time interval of 500 ns/channel. A wavelength tuning range of more than 140 nm was achieved within 350 μs. The output power was controlled to be 10 mW for all channels. A single-mode, accurate, wide, and fast wavelength sweep was demonstrated with the SSG-DBR lasers having TDC mesa structure for the first time.
机译:我们展示了一个单模式和快速波长通过使用Superestrucuture光栅分布式布拉格反射器(SSG-DBR)激光器用于光频域反射计光学相干断层扫使用光源。的SSG-DBR激光器提供单模操作导致高相干性。波长调谐的反应速度非常快;几纳秒,但有从热漂移引起的无意的波长漂移由于注入调谐电流。直接还原铁英尺不幸的是需要很长一段时间收敛;超过几毫秒。用于抑制波长漂移,我们引入了热漂移补偿台面(TDC)平行于激光台面具有20微米的间距。通过控制电流TDC以满足总电力注入激光台面和TDC台面两者,热漂移可以被抑制。在目前的工作中,我们制造4波长的种SSG-DBR激光器,其覆盖相应波长带的; S波段(1496至1529年纳米),C波段(1529至1564年纳米),L〜--band(1564年至1601年纳米),和L〜+波段(1601至1639年)。我们与间隔6.25 GHz和700米的通道设置每个激光器的频率信道。总频率信道号是2800个通道(700 CH×4个激光器)。我们同时用500纳秒/信道的时间间隔操作的4个激光器。大于140nm的波长的调谐范围内是350微秒来实现。输出功率控制为10毫瓦对所有通道。单模,准确,宽,和快速的波长扫描证实具有用于在第一时间TDC台面结构的SSG-DBR激光器。

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