School of Applied and Engineering Physics, Cornell University, Ithaca, NY 14853, USA.
Center for Research and Education in Optics and Lasers, College of Optics and Photonics, University of Central Florida, Orlando, FL 32816, USA.
Science. 2017 Oct 6;358(6359):94-97. doi: 10.1126/science.aao0831.
A laser is based on the electromagnetic modes of its resonator, which provides the feedback required for oscillation. Enormous progress has been made toward controlling the interactions of longitudinal modes in lasers with a single transverse mode. For example, the field of ultrafast science has been built on lasers that lock many longitudinal modes together to form ultrashort light pulses. However, coherent superposition of longitudinal and transverse modes in a laser has received little attention. We show that modal and chromatic dispersions in fiber lasers can be counteracted by strong spatial and spectral filtering. This allows locking of multiple transverse and longitudinal modes to create ultrashort pulses with a variety of spatiotemporal profiles. Multimode fiber lasers thus open new directions in studies of nonlinear wave propagation and capabilities for applications.
激光基于其谐振腔的电磁模式,该模式为振荡提供所需的反馈。在控制具有单一横模的激光中纵模相互作用方面已经取得了巨大进展。例如,超快科学领域就是建立在将许多纵模锁定在一起形成超短光脉冲的激光基础上的。然而,激光中纵模和横模的相干叠加却很少受到关注。我们表明,光纤激光器中的模态和色度色散可以通过强空间和光谱滤波来抵消。这使得可以锁定多个横模和纵模,从而产生具有各种时空分布的超短脉冲。多模光纤激光器因此为非线性波传播的研究和应用能力开辟了新的方向。