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TZID:Australia/Adelaide
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DTSTART:20261004T030000
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TZOFFSETTO:+1030
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DTSTART:20260405T020000
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DTSTAMP:20260730T031512Z
UID:8AE1A36D-1796-44EC-95BD-824CD5820AB0
DTSTART;TZID=Australia/Adelaide:20260727T150000
DTEND;TZID=Australia/Adelaide:20260727T160000
DESCRIPTION:In recent years\, there has been a rapid growth in the use of u
 ltra-thin metasurfaces to control electromagnetic waves with unprecedented
  accuracy. However\, most existing designs rely on passive approaches and 
 perform only a single function\, which significantly limits the broader po
 tential of metasurfaces. In contrast\, tunable and multifunctional metasur
 faces can provide switchable and multiple functionalities\, making them hi
 ghly valuable for integrated solutions. This seminar will highlight the mo
 st recent proof-of-concept work done in the Metamaterials and Nanophotonic
  Group at University of Birmingham on multifunctional metasurfaces operati
 ng at microwaves\, millimetre-wave and Terahertz. Examples driven by curio
 sity or by the desired to proof some specific functionalities will include
  polarising and topological metasurfaces\n\nSpeaker(s): Navarro-Cía\n\nRo
 om: 5.57\, Bldg: Ingkarni Wardli \, City Campus East\, Adelaide \, South A
 ustralia\, Australia\, 5005
LOCATION:Room: 5.57\, Bldg: Ingkarni Wardli \, City Campus East\, Adelaide 
 \, South Australia\, Australia\, 5005
ORGANIZER:shengjian.chen@flinders.edu.au
SEQUENCE:22
SUMMARY:Multi-functional metasurfaces
URL;VALUE=URI:https://events.vtools.ieee.org/m/567383
X-ALT-DESC:Description: &lt;br /&gt;&lt;p&gt;In recent years\, there has been a rapid g
 rowth in the use of ultra-thin&amp;nbsp\;metasurfaces to control electromagnet
 ic waves with unprecedented accuracy.&amp;nbsp\;However\, most existing design
 s rely on passive approaches and perform only a&amp;nbsp\;single function\, wh
 ich significantly limits the broader potential of metasurfaces. In&amp;nbsp\;c
 ontrast\, tunable and multifunctional metasurfaces can provide switchable 
 and&amp;nbsp\;multiple functionalities\, making them highly valuable for integ
 rated solutions.&amp;nbsp\;This seminar will highlight the most recent proof-o
 f-concept work done in the&amp;nbsp\;Metamaterials and Nanophotonic Group at U
 niversity of Birmingham on multifunctional&amp;nbsp\;metasurfaces operating at
  microwaves\, millimetre-wave and Terahertz.&amp;nbsp\;Examples driven by curi
 osity or by the desired to proof some specific&amp;nbsp\;functionalities will 
 include polarising and topological metasurfaces&lt;/p&gt;
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