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Optical pumping of a single hole spin in a quantum dot
Brian D. Gerardot
, Daniel Brunner
,
Paul A. Dalgarno
,
Patrik Ohberg
, Stefan Seidl
, Martin Kroner
, Khaled Karrai
, Nick G. Stoltz
, Pierre M. Petroff
, Richard J. Warburton
School of Engineering & Physical Sciences
Institute of Photonics and Quantum Sciences
Institute of Biological Chemistry, Biophysics and Bioengineering
Research output
:
Contribution to journal
›
Article
›
peer-review
362
Citations (Scopus)
Overview
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INIS
spin
100%
holes
100%
quantum dots
100%
optical pumping
100%
interactions
23%
electrons
17%
nuclei
17%
solids
11%
semiconductor materials
11%
strains
5%
levels
5%
randomness
5%
relaxation
5%
magnetic fields
5%
phonons
5%
fluctuations
5%
confinement
5%
photons
5%
relaxation time
5%
polarization
5%
silicon
5%
valence
5%
quantization
5%
host
5%
quantum states
5%
carbon nanotubes
5%
graphene
5%
quantum bits
5%
trapped electrons
5%
spin echo
5%
Chemistry
Optical Pumping
100%
Quantum Dot
100%
Hyperfine Interaction
42%
Nuclear Spin
42%
Spin Relaxation
28%
Statistical Ensemble
14%
Electron Spin
14%
Spin State
14%
Phonons
14%
Silicon
14%
Magnetic Field
14%
Carbon Nanotube
14%
Graphene Quantum Dots
14%
Physics
Quantum Dot
100%
Optical Pumping
100%
Nuclear Spin
42%
Spin Relaxation
28%
Relaxation Time
14%
Graphene Quantum Dots
14%
Magnetic Field
14%
Carbon Nanotube
14%
Electron Spin
14%
Phonon
14%