Hyperfine-field-mediated spin beating in electrostatically bound charge carrier pairs

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Publication Type Journal Article
School or College College of Science
Department Physics
Creator Lupton, John Mark
Other Author McCamey, D. R.; van Schooten, K. J.; Baker, W. J.; Lee, S.-Y.; Paik, S.-Y.; Boehme, C.
Title Hyperfine-field-mediated spin beating in electrostatically bound charge carrier pairs
Date 2010-01
Description Organic semiconductors offer a unique environment to probe the hyperfine coupling of electronic spins to a nuclear spin bath. We explore the interaction of spins in electron-hole pairs in the presence of inhomogeneous hyperfine fields by monitoring the modulation of the current through an organic light emitting diode under coherent spin-resonant excitation. At weak driving fields, only one of the two spins in the pair precesses. As the driving field exceeds the difference in local hyperfine field experienced by electron and hole, both spins precess, leading to pronounced spin beating in the transient Rabi flopping of the current. We use this effect to measure the magnitude and spatial variation in hyperfine field on the scale of single carrier pairs, as required for evaluating models of organic magnetoresistance, improving organic spintronics devices, and illuminating spin decoherence mechanisms.
Type Text
Publisher American Physical Society
Journal Title Physical Review Letters
Volume 104
Issue 1
DOI 10.1103/PhysRevLett.104.017601
citatation_issn 0031-9007
Subject Spin beating; Electrostatically-bound; Charge carrier pairs; Electronic spins; Nuclear spin bath; Organic light-emitting diodes
Subject LCSH Hyperfine interactions; Organic semiconductors
Language eng
Bibliographic Citation McCamey, D. R., van Schooten, K. J., Baker, W. J., Lee, S.-Y., Paik, S.-Y., Lupton, J. M., & Boehme, C. (2009). Hyperfine-field-mediated spin beating in electrostatically bound charge carrier pairs. Physical Review Letters, 104(1), 017601.
Rights Management (c) American Physical Society http://dx.doi.org/10.1103/PhysRevLett.104.017601
Format Medium application/pdf
Format Extent 455,114 bytes
Identifier ir-main,11825
ARK ark:/87278/s6z89x0j
Setname ir_uspace
ID 706819
Reference URL https://collections.lib.utah.edu/ark:/87278/s6z89x0j
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