Journal Article10.1016/J.PHYCOM.2014.01.006
Full length article: Terahertz band: Next frontier for wireless communications
TL;DR: An in-depth view of Terahertz Band (0.1-10 THz) communication, which is envisioned as a key technology to satisfy the increasing demand for higher speed wireless communication, is provided.
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About: This article is published in Physical Communication. The article was published on 01 Sep 2014. The article focuses on the topics: Spectrum management & Wireless.
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Citations
Dielectric Resonator Nantennas for Optical Communication
Waleed Tariq Sethi,Hamsakutty Vettikalladi,Habib Fathallah,Mohamed Himdi +3 more
- 09 Aug 2017
TL;DR: In this article, two different dielectric resonator antennas (DRA) based designs, one triangular and other hexagonal, are presented, which operate in the optical C-band window (1550 nm).
Terahertz-Enpowered Communications and Sensing in 6G Systems: Opportunities and Challenges
Wei Jiang,Hans D. Schotten +1 more
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TL;DR: Terahertz-enabled communications and sensing in 6G systems offer significant opportunities but also present challenges that need to be overcome.
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Neural Network Based Analysis of Terahertz Frequency Signal Propagation for B5G/6G Wireless Networks
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TL;DR: In this paper , the authors used NS3 TeraSim tool to evaluate upload communication cases from mobile terminals to unique base station in different population and topology scenarios during 10 ms simulated time interval.
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Measurement-Based Modeling of Short Range Terahertz Channels and Their Capacity Analysis
Erhan Karakoca,Hasan Nayir,Gunecs Karabulut Kurt,Ali Gorccin +3 more
- 14 Jun 2023
TL;DR: In this paper , extensive propagation characteristics of short range 240 to 300 GHz terahertz (THz) channels are mapped based on a measurement campaign conducted utilizing a novel, task specific measurement system.
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Artificial intelligence-assisted accurate spectrum prediction in design of terahertz fiber operating in 6G communication window
Jia Shi,Yueping Luo,Shaona Wang,Xiang-Ming Li,Cuijuan Guo,Pingjuan Niu,Xiang Yang,Jianquan Yao +7 more
TL;DR: Accurate spectrum prediction for THz fiber design in 6G communication window using AI-assisted FEM. Accurate spectrum prediction for THz fiber design is achieved by AI-assisted FEM methods. The proposed methods significantly improve the prediction accuracy compared to traditional FEM methods.
2
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The HITRAN 2008 molecular spectroscopic database
Laurence S. Rothman,Iouli E. Gordon,Yurii L. Babikov,A. Barbe,D. Chris Benner,Peter F. Bernath,Manfred Birk,Luca Bizzocchi,Vincent Boudon,Linda R. Brown,Alain Campargue,Kelly Chance,Edward A. Cohen,L. H. Coudert,V. M. Devi,Brian J. Drouin,André Fayt,Jean-Marie Flaud,Robert R. Gamache,Jeremy J. Harrison,Jean-Michel Hartmann,Christian Hill,Joseph T. Hodges,D. Jacquemart,Antoine Jolly,Julien Lamouroux,R. J. Le Roy,Gang Li,David A. Long,O.M. Lyulin,C.J. Mackie,Steven T. Massie,Semen Mikhailenko,Holger S. P. Müller,Olga V. Naumenko,Andrei Nikitin,Johannes Orphal,V.I. Perevalov,Agnes Perrin,E. R. Polovtseva,Charlotte Richard,Mary Ann H. Smith,Evgeniya Starikova,Keeyoon Sung,S.A. Tashkun,Jonathan Tennyson,Geoff Toon,Vl.G. Tyuterev,G. Wagner +48 more
TL;DR: The new HITRAN is greatly extended in terms of accuracy, spectral coverage, additional absorption phenomena, added line-shape formalisms, and validity, and molecules, isotopologues, and perturbing gases have been added that address the issues of atmospheres beyond the Earth.
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