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Frequency and amplitude modulation of ultra-compact terahertz quantum cascade lasers using an integrated avalanche diode oscillator

机译:使用集成雪崩二极管振荡器的超紧凑型太赫兹量子级联激光器的频率和幅度调制

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摘要

Mode-locked comb sources operating at optical frequencies underpin applications ranging from spectroscopy and ultrafast physics, through to absolute frequency measurements and atomic clocks. Extending their operation into the terahertz frequency range would greatly benefit from the availability of compact semiconductor-based sources. However, the development of any compact mode-locked THz laser, which itself is inherently a frequency comb, has yet to be achieved without the use of an external stimulus. High-power, electrically pumped quantum cascade lasers (QCLs) have recently emerged as a promising solution, owing to their octave spanning bandwidths, the ability to achieve group-velocity dispersion compensation and the possibility of obtaining active mode-locking. Here, we propose an unprecedented compact architecture to induce both frequency and amplitude self-modulation in a THz QCL. By engineering a microwave avalanche oscillator into the laser cavity, which provides a 10 GHz self-modulation of the bias current and output power, we demonstrate multimode laser emission centered around 3 THz, with distinct multiple sidebands. The resulting microwave amplitude and frequency self-modulation of THz QCLs opens up intriguing perspectives, for engineering integrated self-mode-locked THz lasers, with impact in fields such as nano- and ultrafast photonics and optical metrology.
机译:在光频率下工作的锁模梳状光源可支持从光谱学和超快物理学到绝对频率测量和原子钟的各种应用。将其工作扩展到太赫兹频率范围将大大受益于紧凑型基于半导体的信号源。然而,在不使用外部刺激的情况下,尚未开发出任何本质上本身就是频率梳的紧凑型锁模太赫兹激光器。高功率,电泵浦量子级联激光器(QCL)由于其倍频程跨度带宽,实现群速度色散补偿的能力以及获得主动锁模的能力,最近成为一种有前途的解决方案。在这里,我们提出了一种前所未有的紧凑型架构,可以在THz QCL中引起频率和幅度自调制。通过将微波雪崩振荡器设计到激光腔中,该雪崩振荡器提供偏置电流和输出功率的10 currentGHz自调制,我们演示了以3 THz为中心的多模激光发射,具有明显的多个边带。所产生的太赫兹QCL的微波幅度和频率自调制为工程集成自锁模太赫兹激光器的工程学打开了有趣的视野,并影响了纳米和超快光子学和光学计量学等领域。

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