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  4. Control of Topological Magnetic Textures by Magnetic and Electric Fields in Magnetoelectric Helimagnet Cu₂OSeO₃
 
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doctoral thesis

Control of Topological Magnetic Textures by Magnetic and Electric Fields in Magnetoelectric Helimagnet Cu₂OSeO₃

Huang, Ping  
2017

Magnetic skyrmions, topologically non-trivial chiral whirl-like spin configurations, have been under massive investigations in both fundamental and application aspects. In some special compounds, these quasi-particles can formtriangular skrymion lattice (SkL) exhibiting abundant unique properties. This thesis presents my comprehensive studies on the SkL in the magnetoelectric (ME) coupling helimagnet Cu2OSeO3. Starting from measurements on single crystal bulk Cu2OSeO3 samples, including dc magnetization, magnetoelectric susceptibility and neutron scattering, so as to get the general understanding of this system, the main work of this thesis focused on the investigation of quasi-two dimensional thin slab samples by the state-of-the-art Lorentz electron transmission electron microscopy (LTEM). Variousmagnetic textures including the spin helices and skyrmions were observed and analyzed. What separates the work presented here from literatures is the special emphasis on the dynamics of the SkL under various excitations in real space and real time, such as thermal fluctuation, magnetic field and electric field. Specifically, the magnetic field induced melting of the SkL in Cu2OSeO3 was, for the first time, observed and analyzed quantitatively. Two-step melting process was observed and demonstrated to follow the Kosterlitz-Thouless-Halperin-Nelson-Young (KTHNY) theory. The application of electric field can not only rotate the SkL, but also create skyrmions fromthe helical phase. My studies, especially those focused on the emergent properties induced by external fields, are intended to provide deeper insight into the fundamental knowledge of the SkL in Cu2OSeO3 and to promote the the development of skyrmion based spintronic applications.

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Type
doctoral thesis
DOI
10.5075/epfl-thesis-7719
Author(s)
Huang, Ping  
Advisors
Rønnow, Henrik Moodysson  
Jury

Prof. Frédéric Mila (président) ; Prof. Henrik Moodysson Rønnow (directeur de thèse) ; Prof. Fabrizio Carbone, Dr István Kézsmárki, Prof. Achim Rosch (rapporteurs)

Date Issued

2017

Publisher

EPFL

Publisher place

Lausanne

Public defense year

2017-04-27

Thesis number

7719

Total of pages

112

Subjects

skyrmions

•

magnetoelectric coupling

•

Lorentz electron transmission microscopy

•

2D crystal melting

EPFL units
LQM  
Faculty
SB  
School
IPHYS  
Doctoral School
EDPY  
Available on Infoscience
April 24, 2017
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/136580
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