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Pump-probe nuclear spin relaxation study of the quantum Hall ferromagnet at filling factor ν = 2
by
Mishima, T D
, Yang, K F
, Santos, M B
, Hirayama, Y
, Liu, H W
, Yang, Z N
, Uddin, M M
, Nagase, K
in
domain wall skyrmion
/ Domain walls
/ Electron gas
/ Electrons
/ Ferromagnetism
/ Hypothetical particles
/ Nuclear spin
/ nuclear spin-lattice relaxation time
/ Particle theory
/ Physics
/ quantum Hall ferromagnet
/ Relaxation time
/ Spin-lattice relaxation
/ Temperature dependence
2019
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Pump-probe nuclear spin relaxation study of the quantum Hall ferromagnet at filling factor ν = 2
by
Mishima, T D
, Yang, K F
, Santos, M B
, Hirayama, Y
, Liu, H W
, Yang, Z N
, Uddin, M M
, Nagase, K
in
domain wall skyrmion
/ Domain walls
/ Electron gas
/ Electrons
/ Ferromagnetism
/ Hypothetical particles
/ Nuclear spin
/ nuclear spin-lattice relaxation time
/ Particle theory
/ Physics
/ quantum Hall ferromagnet
/ Relaxation time
/ Spin-lattice relaxation
/ Temperature dependence
2019
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Pump-probe nuclear spin relaxation study of the quantum Hall ferromagnet at filling factor ν = 2
by
Mishima, T D
, Yang, K F
, Santos, M B
, Hirayama, Y
, Liu, H W
, Yang, Z N
, Uddin, M M
, Nagase, K
in
domain wall skyrmion
/ Domain walls
/ Electron gas
/ Electrons
/ Ferromagnetism
/ Hypothetical particles
/ Nuclear spin
/ nuclear spin-lattice relaxation time
/ Particle theory
/ Physics
/ quantum Hall ferromagnet
/ Relaxation time
/ Spin-lattice relaxation
/ Temperature dependence
2019
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Pump-probe nuclear spin relaxation study of the quantum Hall ferromagnet at filling factor ν = 2
Journal Article
Pump-probe nuclear spin relaxation study of the quantum Hall ferromagnet at filling factor ν = 2
2019
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Overview
The nuclear spin-lattice relaxation time
T
1
of the
ν
= 2 quantum Hall ferromagnet (QHF) formed in a gate-controlled InSb two-dimensional electron gas has been characterized using a pump-probe technique. In contrast to a long
T
1
of quantum Hall states around
ν
= 1 that possesses a Korringa-type temperature dependence, the temperature-independent short
T
1
of the
ν
= 2 QHF suggests the presence of low energy collective spin excitations in a domain wall. Furthermore,
T
1
of this ferromagnetic state is also found to be filling- and current-independent. The interpretation of these results as compared to the
T
1
properties of other QHFs is discussed in terms of the domain wall skyrmion, which will lead to a better understanding of the QHF.
Publisher
IOP Publishing
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