论文标题
来自8 $μ$ M波长半导体激光器的模式锁定的超短脉冲
Mode-locked ultrashort pulses from an 8 $μ$m wavelength semiconductor laser
论文作者
论文摘要
量子级联激光器(QCL)彻底改变了中红外光的产生。然而,到目前为止,中型QCL的超快载体运输已经构成了形成Ultrashort Light脉冲的障碍。在这里,我们证明了增益培养基的仔细量子设计和对InterMode Beat同步的控制,从而从QCL频率梳子中启用了变换限制的picsecond脉冲。脉冲动力学上的灯光亮起了干扰素射频技术和二阶自相关棚,并确认从阈值到滚动电流实现了模式锁定的操作。在分子指纹区域中,电泵和紧凑,模式锁定的QCL铺平了单层整合的非线性光子学的道路。
Quantum cascade lasers (QCL) have revolutionized the generation of mid-infrared light. Yet, the ultrafast carrier transport in mid-infrared QCLs has so far constituted a seemingly insurmountable obstacle for the formation of ultrashort light pulses. Here, we demonstrate that careful quantum design of the gain medium and control over the intermode beat synchronization enable transform-limited picosecond pulses from QCL frequency combs. Both an interferometric radio-frequency technique and second-order autocorrelation shed light on the pulse dynamics and confirm that mode-locked operation is achieved from threshold to rollover current. Being electrically pumped and compact, mode-locked QCLs pave the way towards monolithically integrated non-linear photonics in the molecular fingerprint region beyond 6 $μ$m wavelength.