Gkortsas V-M, Wang C, Kuznetsova L, Diehl L, Gordon A, Jirauschek C, Belkin M A, Belyanin A, Capasso F, Kärtner F X
Department of Electrical Engineering and Computer Science and Research Laboratory of Electronics, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.
Opt Express. 2010 Jun 21;18(13):13616-30. doi: 10.1364/OE.18.013616.
The impact of upper state lifetime and spatial hole burning on pulse shape and stability in actively mode locked QCLs is investigated by numerical simulations. It is shown that an extended upper state lifetime is necessary to achieve stable isolated pulse formation per roundtrip. Spatial hole burning helps to reduce the pulse duration by supporting broadband multimode lasing, but introduces pulse instabilities which eventually lead to strongly structured pulse shapes that further degrade with increased pumping. At high pumping levels gain saturation and recovery between pulses leads to suppression of mode locking. In the absence of spatial hole burning the laser approaches single-mode lasing, while in the presence of spatial hole burning the mode locking becomes unstable and the laser dynamics does not reach a steady state anymore.
通过数值模拟研究了上能级寿命和空间烧孔对主动锁模量子级联激光器中脉冲形状和稳定性的影响。结果表明,为了在每个往返周期内实现稳定的孤立脉冲形成,需要延长上能级寿命。空间烧孔通过支持宽带多模激射有助于缩短脉冲持续时间,但会引入脉冲不稳定性,最终导致脉冲形状结构强烈,且随着泵浦增加而进一步恶化。在高泵浦水平下,脉冲间的增益饱和和恢复会导致锁模受到抑制。在没有空间烧孔的情况下,激光器趋近于单模激射,而在存在空间烧孔的情况下,锁模变得不稳定,激光动力学不再达到稳态。