| Literature DB >> 32528142 |
Xinrui Liu1, Maksim Melnik1, Maria Zhukova2, Egor Oparin1, Joel J P C Rodrigues1,3,4, Anton Tcypkin1, Sergei Kozlov1.
Abstract
The state-of-art broadband THz sources can contribute to the development of short-range 6G communications. This paper has demonstrated the feasibility of forming the controllable sequence of THz subpulses in the temporal domain and the corresponding quasidiscrete spectrum by the interference of two THz pulses with an exponential chirp. Moreover, due to small time delay between these pulses the temporal and spectral structures are similar to each other (so-called "linkage relation"). This will benefit information encoding in the THz range. The calculated metrics for the prototype communication channel based on the proposed method are competitive with existing short-range THz CW channels.Entities:
Year: 2020 PMID: 32528142 PMCID: PMC7289863 DOI: 10.1038/s41598-020-66437-4
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1(a) Experimental chirp of THz pulse and its exponential approximation, (b) quasi-discrete spectrum (c) and temporal structure of the pulse train.
Figure 2(a) Spectrum, (b) temporal structure and chirp of simulated chirped THz pulse. (c) Quasi-discrete spectrum and (d) pulse train formed from interference of two chirped pulses.
Figure 5(a) Single THz pulse generated in InAs and (b) its spectrum. (c) The chirped THz pulse from hollow metal waveguide and (d) its spectrum.
Figure 3Comparison of original pulse (blue solid line) and encoded pulse (red dashed line) with cutting out one of the lines. (a), (c) Quasi-discrete spectrum and (b), (d) corresponding pulse train.
Figure 4Experimental setup for THz pulse train generation from interference of two chirped THz pulses based on the conventional THz time-domain spectrometer. BS – beam splitter, M1, M2 – Michelson interferometer mirrors, E – THz emitter – InAs crystal for optical–to–THz conversion, HMW – hollow metal waveguide, EO – electro-optic detection system.