NEST, CNR - Istituto Nanoscienze and Scuola Normale Superiore, Piazza San Silvestro 12, Pisa, 56127, Italy.
CNR - Istituto di Fotonica e Nanotecnologie, Piazza Leonardo da Vinci 32, Milano, 20133, Italy.
Adv Sci (Weinh). 2023 Mar;10(9):e2206824. doi: 10.1002/advs.202206824. Epub 2023 Jan 27.
Mode locking, the self-starting synchronous oscillation of electromagnetic modes in a laser cavity, is the primary way to generate ultrashort light pulses. In random lasers, without a cavity, mode-locking, the nonlinear coupling amongst low spatially coherent random modes, can be activated via optical pumping, even without the emission of short pulses. Here, by exploiting the combination of the inherently giant third-order χ nonlinearity of semiconductor heterostructure lasers and the nonlinear properties of graphene, the authors demonstrate mode-locking in surface-emitting electrically pumped random quantum cascade lasers at terahertz frequencies. This is achieved by either lithographically patterning a multilayer graphene film to define a surface random pattern of light scatterers, or by coupling on chip a saturable absorber graphene reflector. Intermode beatnote mapping unveils self-induced phase-coherence between naturally incoherent random modes. Self-mixing intermode spectroscopy reveals phase-locked random modes. This is an important milestone in the physics of disordered systems. It paves the way to the development of a new generation of miniaturized, electrically pumped mode-locked light sources, ideal for broadband spectroscopy, multicolor speckle-free imaging applications, and reservoir quantum computing.
锁模,即激光腔中电磁模式的自启动同步振荡,是产生超短光脉冲的主要方法。在随机激光器中,没有腔,通过光泵浦,可以激活模式锁定,即低空间相干随机模式之间的非线性耦合,即使没有短脉冲的发射。在这里,通过利用半导体异质结构激光器固有的巨大三阶 χ非线性和石墨烯的非线性特性,作者在太赫兹频率的表面发射电泵浦随机量子级联激光器中演示了锁模。这可以通过光刻图案化多层石墨烯膜以定义光散射器的表面随机图案,或者通过在芯片上耦合可饱和吸收体石墨烯反射器来实现。模式间拍频映射揭示了自然非相干随机模式之间的自诱导相位相干性。自混合模式光谱学揭示了锁定的随机模式。这是无序系统物理中的一个重要里程碑。它为新一代小型化、电泵浦锁模光源的发展铺平了道路,这些光源非常适合宽带光谱学、多色无散斑成像应用以及量子计算。