8.1 Gbps PAM8 Long-Wave IR FSO Transmission using a 9.15-µm Directly-Modulated QCL with an MCT Detector
            
            2023 Optical Fiber Communications Conference and Exhibition (OFC 2023): Proceedings
            2023
            
        
                Mahdieh Joharifar,
        
                Mengyao Han,
        
                Richard Schatz,
        
                Rafael Puerta,
        
                Yan-Ting Sun,
        
                Yuchuan Fan,
        
                Gregory Maisons,
        
                Johan Abautret,
        
                Roland Teissier,
        
                Lu Zhang,
        
                Sandis Spolītis,
        
                Muguang Wang,
        
                Vjačeslavs Bobrovs,
        
                Sebastian Lourdudoss,
        
                Xianbin Yu,
        
                Sergei Popov,
        
                Oskars Ozoliņš,
        
                Xiaodan Pang
        
    
            
            
            We experimentally demonstrate a Long-Wave IR FSO link with a 9.15-µm directly
modulated quantum cascade laser at room temperature. Up to 8.1 Gb/s PAM8 transmission over 1.4 meter is achieved with a wideband MCT detector. © 2022 The Author(s)
            
            
            
                Atslēgas vārdi
                transimpedance amplifiers (TIA), 8-level pulse amplitude modulations (PAM8),  distributed-feedback (DFB), arbitrary waveform generator (AWG)
            
            
                DOI
                10.23919/OFC49934.2023.10116892
            
            
                Hipersaite
                https://ieeexplore.ieee.org/document/10116892
            
            
            Joharifar, M., Han, M., Schatz, R., Puerta, R., Sun, Y., Fan, Y., Maisons, G., Abautret, J., Teissier, R., Zhang, L., Spolītis, S., Wang, M., Bobrovs, V., Lourdudoss, S., Yu, X., Popov, S., Ozoliņš, O., Pang, X. 8.1 Gbps PAM8 Long-Wave IR FSO Transmission using a 9.15-µm Directly-Modulated QCL with an MCT Detector. No: 2023 Optical Fiber Communications Conference and Exhibition (OFC 2023): Proceedings, Amerikas savienotās valstis, San Diego, 5.-9. maijs, 2023. Piscataway: IEEE, 2023, 1.-3.lpp. ISBN 978-195717118-0. Pieejams: doi:10.23919/OFC49934.2023.10116892
            
                Publikācijas valoda
                English (en)