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Electronic and magnetic properties of Tsai quasicrystals and their approximants under pressure
Uppsala universitet, Teknisk-naturvetenskapliga vetenskapsområdet, Tekniska sektionen, Institutionen för materialvetenskap, Fasta tillståndets fysik. (Functional Quasicrystals (FuncQC))ORCID-id: 0000-0003-0509-3907
2022 (engelsk)Licentiatavhandling, monografi (Annet vitenskapelig)
Abstract [en]

Quasicrystals constitute a special category of crystals exhibiting long-range order without periodicity. This strange feature allows them to exhibit rotational symmetries prohibited in regular crystals, such as 5-, 8-, 10- or 12-fold symmetry. Amongst them, icosahedral quasicrystals are the only type that is aperiodic along all 3 dimensions. The present work will focus on Tsai-Type quasicrystals and their approximants, which are the most studied type of icosahedral quasicrystals. We will introduce how they can be generated froma hyperspace perspective, their exotic structure and how it relates to their physical properties. Pressure is a key parameter which can be used to alter the condensed matter properties of a material. By reducing the size of samples and using diamond anvil cells, it is possible to obtain the highest experimentally achievable pressures and collect informations such as magnetization, electrical resistivity or Raman signal. This work will introduce the specialized diamond anvil cells we used to investigate electron transport and magnetization under pressure, explain in details how to circumvent the most common difficulties arising with high pressure setups. and describe how high pressure affects Tsai quasicrystals and approximants in terms of structure and magnetic properties.

sted, utgiver, år, opplag, sider
Uppsala: Uppsala universitet, 2022. , s. 42
Emneord [en]
Tsai quasicrystal, high pressure, diamond anvil cell
HSV kategori
Forskningsprogram
Fysik med inriktning mot atom- molekyl- och kondenserande materiens fysik
Identifikatorer
URN: urn:nbn:se:uu:diva-466434OAI: oai:DiVA.org:uu-466434DiVA, id: diva2:1632863
Presentation
2022-01-28, https://uu-se.zoom.us/j/64576025614, Uppsala, 09:15 (engelsk)
Opponent
Veileder
Forskningsfinansiär
Knut and Alice Wallenberg FoundationTilgjengelig fra: 2022-02-10 Laget: 2022-01-27 Sist oppdatert: 2022-02-10bibliografisk kontrollert

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Denoel, Fernand

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