Han Song, Cui Jieyuan, Chua Yunda, Zeng Yongquan, Hu Liangxing, Dai Mingjin, Wang Fakun, Sun Fangyuan, Zhu Song, Li Lianhe, Davies Alexander Giles, Linfield Edmund Harold, Tan Chuan Seng, Kivshar Yuri, Wang Qi Jie
Centre for Optoelectronics and Biophotonics, School of Electrical and Electronic Engineering & The Photonics Institute, Nanyang Technological University, Singapore, Singapore.
Electronic Information School, Wuhan University, Wuhan, China.
Light Sci Appl. 2023 Jun 12;12(1):145. doi: 10.1038/s41377-023-01200-8.
One of the most exciting breakthroughs in physics is the concept of topology that was recently introduced to photonics, achieving robust functionalities, as manifested in the recently demonstrated topological lasers. However, so far almost all attention was focused on lasing from topological edge states. Bulk bands that reflect the topological bulk-edge correspondence have been largely missed. Here, we demonstrate an electrically pumped topological bulk quantum cascade laser (QCL) operating in the terahertz (THz) frequency range. In addition to the band-inversion induced in-plane reflection due to topological nontrivial cavity surrounded by a trivial domain, we further illustrate the band edges of such topological bulk lasers are recognized as the bound states in the continuum (BICs) due to their nonradiative characteristics and robust topological polarization charges in the momentum space. Therefore, the lasing modes show both in-plane and out-of-plane tight confinements in a compact laser cavity (lateral size ~3λ). Experimentally, we realize a miniaturized THz QCL that shows single-mode lasing with a side-mode suppression ratio (SMSR) around 20 dB. We also observe a cylindrical vector beam for the far-field emission, which is evidence for topological bulk BIC lasers. Our demonstration on miniaturization of single-mode beam-engineered THz lasers is promising for many applications including imaging, sensing, and communications.
物理学中最令人兴奋的突破之一是拓扑学概念,该概念最近被引入到光子学领域,实现了强大的功能,正如最近展示的拓扑激光器所体现的那样。然而,到目前为止,几乎所有的注意力都集中在拓扑边缘态的激光发射上。反映拓扑体边对应关系的体带在很大程度上被忽视了。在这里,我们展示了一种在太赫兹(THz)频率范围内工作的电泵浦拓扑体量子级联激光器(QCL)。除了由于被平凡区域包围的拓扑非平凡腔引起的带反转诱导面内反射外,我们还进一步说明,这种拓扑体激光器的带边由于其非辐射特性和动量空间中稳健的拓扑极化电荷而被视为连续统中的束缚态(BICs)。因此,激光模式在紧凑的激光腔(横向尺寸~3λ)中表现出平面内和平面外的紧密限制。在实验中,我们实现了一种小型化的太赫兹QCL,其单模激光发射的边模抑制比(SMSR)约为20dB。我们还观察到远场发射的圆柱矢量光束,这是拓扑体BIC激光器的证据。我们对单模光束工程太赫兹激光器小型化的演示对于包括成像、传感和通信在内的许多应用具有广阔前景。