In the field of free-space optical communication (FSOC), the sensitivity of the receiver can be affected by atmospheric turbulence, leading to light-intensity scintillation or beam drift. This paper o...
Information It has been substantiated that the most rational solution of these problems is the use of fiber-optical communication systems for transmitting heterodyne signals. A new design of the
Information The technical significance, history of research and development, relevant technical tasks, and recent progress in heterodyne and coherent optical fiber communications are described.
Information Principle, significance, demonstration and development of free space optical (FSO) communication technology over different decades are discussed.
Information We propose and implement a free-space optical (FSO) communication system based on few-mode heterodyne detection that can effectively suppress atmospheric turbulence effects.
Information Here, we present an ultra-simple low-latency self-homodyne coherent interconnect solution through anti-resonant hollow core fibre and leverages the Fermat number transform to
Information We review detection methods, including noncoherent, differentially coherent, and coherent detection, as well as a hybrid method. We compare modulation methods encoding information in various degrees
Information Here, we demonstrate a switchable high-order mode generation by introducing an acousto-optic interaction on the AR-HCF, along with an investigation of the flexural acoustic waves by using a
Information To compare the sensitivity performance of the few-mode heterodyne receiver with an FM-OFA and the few-mode heterodyne receiver without an FM-OFA, this paper builds the FSO
Information Figure 1: Setup for optical heterodyne detection. Optical heterodyne detection involves optical signal and local oscillator waves, whereas the mixing product is an electrical signal.
Information Experimental Demonstration of Coherent Heterodyne Detection for Multiple Mid-IR Free-Space Optical (FSO) Data Channels with a Native Mid-IR Detector. Huibin Zhou, Yue Zuo, Abdulrahman Alhaddad,
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