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- W3104058323 abstract "In mesoscopic physics, interference effects play a central role on the transport properties of conduction electrons, giving rise to exotic phenomena such as weak localization, Aharonov-Bohm effect, and universal conduction fluctuations. Mesoscopic objects have a size on the order of the {em phase-breaking length} $L_{phi}$, the length conduction electrons travel while keeping phase coherence. In this letter, we use vibrational spectroscopy in combination with a novel optical defocusing method to measure $L_{phi}$ of photo-excited electrons in graphene which undergo inelastic scattering by optical phonons. We extract $L_{phi}$ from the spatial confinement of the defect-induced Raman D band near the edges of graphene. Temperature dependent measurements in the range of 1.55,K to 300,K yield $L_{phi} propto 1/sqrt{T}$, in agreement with previous magneto-transport measurements." @default.
- W3104058323 created "2020-11-23" @default.
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- W3104058323 date "2011-02-22" @default.
- W3104058323 modified "2023-10-18" @default.
- W3104058323 title "Low Temperature Raman Study of the Electron Coherence Length near Graphene Edges" @default.
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- W3104058323 doi "https://doi.org/10.1021/nl104134a" @default.
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