Прати
Scott Crooker
Scott Crooker
National High Magnetic Field Lab - Los Alamos National Laboratory
Верификована је имејл адреса на lanl.gov - Почетна страница
Наслов
Навело
Навело
Година
Electrical detection of spin transport in lateral ferromagnet–semiconductor devices
X Lou, C Adelmann, SA Crooker, ES Garlid, J Zhang, KSM Reddy, ...
Nature Physics 3 (3), 197-202, 2007
10572007
Spectrally Resolved Dynamics of Energy Transfer in Quantum-Dot Assemblies:<? format?> Towards Engineered Energy Flows in Artificial Materials
SA Crooker, JA Hollingsworth, S Tretiak, VI Klimov
Physical Review Letters 89 (18), 186802, 2002
8402002
Scaling law for excitons in 2D perovskite quantum wells
JC Blancon, AV Stier, H Tsai, W Nie, CC Stoumpos, B Traore, ...
Nature communications 9 (1), 2254, 2018
7772018
Multiple temperature regimes of radiative decay in CdSe nanocrystal quantum dots: Intrinsic limits to the dark-exciton lifetime
SA Crooker, T Barrick, JA Hollingsworth, VI Klimov
Applied Physics Letters 82 (17), 2793-2795, 2003
4882003
Imaging spin transport in lateral ferromagnet/semiconductor structures
SA Crooker, M Furis, X Lou, C Adelmann, DL Smith, CJ Palmstrøm, ...
Science 309 (5744), 2191-2195, 2005
4602005
Optical spin resonance and transverse spin relaxation in magnetic semiconductor quantum wells
SA Crooker, DD Awschalom, JJ Baumberg, F Flack, N Samarth
Physical Review B 56 (12), 7574, 1997
4291997
Exciton diamagnetic shifts and valley Zeeman effects in monolayer WS2 and MoS2 to 65 Tesla
AV Stier, KM McCreary, BT Jonker, J Kono, SA Crooker
Nature communications 7 (1), 10643, 2016
3802016
Long-lived nanosecond spin relaxation and spin coherence of electrons in monolayer MoS2 and WS2
L Yang, NA Sinitsyn, W Chen, J Yuan, J Zhang, J Lou, SA Crooker
Nature Physics 11 (10), 830-834, 2015
3662015
Breakdown of volume scaling in Auger recombination in CdSe/CdS heteronanocrystals: the role of the core− shell interface
F García-Santamaría, S Brovelli, R Viswanatha, JA Hollingsworth, ...
Nano letters 11 (2), 687-693, 2011
3582011
Magnetooptics of exciton Rydberg states in a monolayer semiconductor
AV Stier, NP Wilson, KA Velizhanin, J Kono, X Xu, SA Crooker
Physical review letters 120 (5), 057405, 2018
3082018
Revealing exciton masses and dielectric properties of monolayer semiconductors with high magnetic fields
M Goryca, J Li, AV Stier, T Taniguchi, K Watanabe, E Courtade, S Shree, ...
Nature communications 10 (1), 4172, 2019
3052019
Nano-engineered electron–hole exchange interaction controls exciton dynamics in core–shell semiconductor nanocrystals
S Brovelli, RD Schaller, SA Crooker, F García-Santamaría, Y Chen, ...
Nature communications 2 (1), 280, 2011
2972011
Spectroscopy of spontaneous spin noise as a probe of spin dynamics and magnetic resonance
SA Crooker, DG Rickel, AV Balatsky, DL Smith
Nature 431 (7004), 49-52, 2004
2902004
Probing the Influence of Dielectric Environment on Excitons in Monolayer WSe2: Insight from High Magnetic Fields
AV Stier, NP Wilson, G Clark, X Xu, SA Crooker
Nano letters 16 (11), 7054-7060, 2016
2872016
Tunable magnetic exchange interactions in manganese-doped inverted core–shell ZnSe–CdSe nanocrystals
DA Bussian, SA Crooker, M Yin, M Brynda, AL Efros, VI Klimov
Nature materials 8 (1), 35-40, 2009
2782009
Electrical detection of spin accumulation at a ferromagnet-semiconductor interface
X Lou, C Adelmann, M Furis, SA Crooker, CJ Palmstrøm, PA Crowell
Physical review letters 96 (17), 176603, 2006
2762006
Picosecond energy transfer in quantum dot Langmuir− Blodgett nanoassemblies
M Achermann, MA Petruska, SA Crooker, VI Klimov
The Journal of Physical Chemistry B 107 (50), 13782-13787, 2003
2762003
Terahertz spin precession and coherent transfer of angular momenta in magnetic quantum wells
SA Crooker, JJ Baumberg, F Flack, N Samarth, DD Awschalom
Physical review letters 77 (13), 2814, 1996
2731996
Imaging spin flows in semiconductors subject to electric, magnetic, and strain fields
SA Crooker, DL Smith
Physical review letters 94 (23), 236601, 2005
2522005
Copper-doped inverted core/shell nanocrystals with “permanent” optically active holes
R Viswanatha, S Brovelli, A Pandey, SA Crooker, VI Klimov
Nano letters 11 (11), 4753-4758, 2011
2102011
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