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VERSION:2.0
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BEGIN:VEVENT
SUMMARY:Quantum matter and its splendor: when plasmas\, particles and quan
 tum technologies meet
DTSTART:20230112T160000Z
DTEND:20230112T170000Z
DTSTAMP:20260730T192041Z
UID:3fd41d96-d0e0-425a-bc7f-c5251fa1b654
SEQUENCE:13
CREATED:20221223T110444Z
DESCRIPTION:Abstract: Quantum Matter commonly refers to materials which re
 quire quantum mechanics for a proper description\, and its study falls mai
 nly in the field of condensed matter. Motivated by the interdisciplinarity
  in the most recent challenges of modern physics – namely topology\, pla
 smonics\, quantum technologies and dark matter – quantum matter requires
  different tools and covers subjects of various disciplines: plasma physic
 s\, material science and particle physics. This is why the best theoretica
 l physics institutes across the world strongly invest on quantum matter re
 search.In this talk\, I will explain my research in quantum matter\, which
 \, in a nutshell\, comprises the study of quantum materials under the view
  of a plasma physicist (and vice versa). In particular\, I will present th
 ree axes of research that put in evidence such a rich\, interdisciplinary 
 merging of disciplines: graphene plasmonics\, production and detection of 
 axions (one of the best candidates to dark matter) in plasmas and meta-mat
 erials\, and quantum simulations with cold atoms. I will conclude with a c
 onsideration on how my theoretical work is in close relation to the experi
 ments performed both at IST and in other institutions.
LAST-MODIFIED:20221223T114336Z
LOCATION:TBA
URL:http://df.vps.tecnico.ulisboa.pt/pt/eventos/quantum-matter-and-its-spl
 endor-when-plasmas-particles-and-quantum-technologies-meet/
X-ALT-DESC;FMTTYPE=text/html:<p data-block-key="6pfcx">Abstract: Quantum M
 atter commonly refers to materials which require quantum mechanics for a p
 roper description\, and its study falls mainly in the field of condensed m
 atter. Motivated by the interdisciplinarity in the most recent challenges 
 of modern physics – namely topology\, plasmonics\, quantum technologies 
 and dark matter – quantum matter requires different tools and covers sub
 jects of various disciplines: plasma physics\, material science and partic
 le physics. This is why the best theoretical physics institutes across the
  world strongly invest on quantum matter research.</p><p data-block-key="5
 9toe"></p><p data-block-key="aj29u">In this talk\, I will explain my resea
 rch in quantum matter\, which\, in a nutshell\, comprises the study of qua
 ntum materials under the view of a plasma physicist (and vice versa). In p
 articular\, I will present three axes of research that put in evidence suc
 h a rich\, interdisciplinary merging of disciplines: graphene plasmonics\,
  production and detection of axions (one of the best candidates to dark ma
 tter) in plasmas and meta-materials\, and quantum simulations with cold at
 oms. I will conclude with a consideration on how my theoretical work is in
  close relation to the experiments performed both at IST and in other inst
 itutions.</p>
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