Gellie Pierre, Barbieri Stefano, Lampin Jean-François, Filloux Pascal, Manquest Christophe, Sirtori Carlo, Sagnes Isabelle, Khanna Suraj P, Linfield Edmund H, Davies A Giles, Beere Harvey, Ritchie David
Laboratoire Matériaux et Phénomènes Quantiques, Université Paris 7and CNRS UMR 7162, 10 rue A. Domont et L. Duquet, 75205 Paris, France.
Opt Express. 2010 Sep 27;18(20):20799-816. doi: 10.1364/OE.18.020799.
We demonstrate that the cavity resonance frequency - the round-trip frequency - of Terahertz quantum cascade lasers can be injection-locked by direct modulation of the bias current using an RF source. Metal-metal and single-plasmon waveguide devices with roundtrip frequencies up to 35GHz have been studied, and show locking ranges above 200MHz. Inside this locking range the laser round-trip frequency is phase-locked, with a phase noise determined by the RF-synthesizer. We find a square-root dependence of the locking range with RF-power in agreement with classical injection-locking theory. These results are discussed in the context of mode-locking operation.
我们证明,太赫兹量子级联激光器的腔共振频率(往返频率)可以通过使用射频源直接调制偏置电流来实现注入锁定。已对往返频率高达35GHz的金属-金属和单等离子体波导器件进行了研究,其锁定范围超过200MHz。在该锁定范围内,激光往返频率被锁相,相位噪声由射频合成器决定。我们发现锁定范围与射频功率呈平方根依赖关系,这与经典注入锁定理论一致。在锁模操作的背景下对这些结果进行了讨论。