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- W4285191108 abstract "Macroscopic quantum phenomena are often governed by the microscopic nature of quantum systems. An example of this is the quantum Hall (QH) effect, which emerges in semiconductor quantum structures under strong magnetic fields and exhibits non-dissipative electronic transport under the QH chiral edge state. This transport is protected by the QH insulating phase, which contains the so-called localised state, and is strongly affected by the spin subsystems. In this chapter, we review the microscopic aspects of electronic and spin-related QH systems by describing various scanning-probe experiments that have been performed by our group and other researchers. We focus on non-uniform QH states involving bulk-localised and edge states and non-uniform QH spin states that couple with nuclear spins through hyperfine interaction. In particular, the latter were addressed in our recent study in which we used a scanning probe applying a nuclear resonance (NR) technique to visualise the spatial distributions of both nuclear and electron spin polarisation. We demonstrate how the microscopic structures of these states are correlated with the QH effect." @default.
- W4285191108 created "2022-07-14" @default.
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- W4285191108 date "2022-01-01" @default.
- W4285191108 modified "2023-10-17" @default.
- W4285191108 title "Microscopic Properties of Quantum Hall Effects" @default.
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- W4285191108 doi "https://doi.org/10.1007/978-981-19-1201-6_13" @default.
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