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TZID:Australia/Adelaide
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DTSTART:20231001T030000
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DTSTAMP:20230503T075742Z
UID:3F03918D-CD49-4B1B-8D59-BCC95842187F
DTSTART;TZID=Australia/Adelaide:20230503T140000
DTEND;TZID=Australia/Adelaide:20230503T150000
DESCRIPTION:Research activities in terahertz (THz) communications have beco
 me intensive in response to the rapidly growing data traffic in wireless n
 etworks. Within an atmospheric window\, a wireless transmission data rate 
 over 100 Gbit/s carried by a single THz band has been achieved. This shows
  a great potential for terahertz link to serve back-haul connectivity for 
 the future 6G communications\, and for intra-/inter-chip communications wi
 th large data volume. In this talk\, the recent advances in THz communicat
 ions enabled by photonics will be reported. It will mainly cover THz commu
 nications systems adopting the latest transmitter and receiver technologie
 s to achieve high transmission data rate\, i.e.\, Brillouin lasers and Fer
 mi-level managed barrier diodes. Additionally\, various high-efficiency an
 d broadband THz components based on all-silicon effective-medium-clad wave
 guide platform and/ or 3D printing will be introduced including polarizati
 on multiplexers\, polarization rotators\, lens antennas\, and circularly p
 olarized antennas. It can be foreseen that all these devices and component
 s can largely benefit future 6G communications.\n\nSpeaker(s): Dr. Weijie 
 Gao\, \n\nRoom: Room  IW5.58\, Bldg: Ingkarni-Wardii\, The University of A
 delaide\, Adelaide\, South Australia\, Australia\, 5005\, Virtual: https:/
 /events.vtools.ieee.org/m/359661
LOCATION:Room: Room  IW5.58\, Bldg: Ingkarni-Wardii\, The University of Ade
 laide\, Adelaide\, South Australia\, Australia\, 5005\, Virtual: https://e
 vents.vtools.ieee.org/m/359661
ORGANIZER:shengjian.chen@adelaide.edu.au
SEQUENCE:5
SUMMARY:Terahertz Communications Accelerated by Photonic Technologies
URL;VALUE=URI:https://events.vtools.ieee.org/m/359661
X-ALT-DESC:Description: &lt;br /&gt;&lt;p&gt;Research activities in terahertz (THz) com
 munications have become intensive in response to the rapidly growing data 
 traffic in wireless networks. Within an atmospheric window\, a wireless tr
 ansmission data rate over 100 Gbit/s carried by a single THz band has been
  achieved. This shows a great potential for terahertz link to serve back-h
 aul connectivity for the future 6G communications\, and for intra-/inter-c
 hip communications with large data volume. In this talk\, the recent advan
 ces in THz communications enabled by photonics will be reported. It will m
 ainly cover THz communications systems adopting the latest transmitter and
  receiver technologies to achieve high transmission data rate\, i.e.\, Bri
 llouin lasers and Fermi-level managed barrier diodes. Additionally\, vario
 us high-efficiency and broadband THz components based on all-silicon effec
 tive-medium-clad waveguide platform and/ or 3D printing will be introduced
  including polarization multiplexers\, polarization rotators\, lens antenn
 as\, and circularly polarized antennas. It can be foreseen that all these 
 devices and components can largely benefit future 6G communications.&lt;/p&gt;\n
 &lt;p&gt;&amp;nbsp\;&lt;/p&gt;
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