A mesoscopic metallic island in the quantum Hall regime exhibits a two-step thermalization process driven by fast electronic channels and slower coupling to phonons and nuclear spins.
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Coexistence of upstream charge and neutral modes in multi-terminal geometry for the ν=1 quantum Hall state leads to enhanced electrical and thermal Hall conductances exceeding twice the unreconstructed quantized values.
citing papers explorer
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Heating Dynamics of Mesoscopic Electron Baths at High Magnetic Field
A mesoscopic metallic island in the quantum Hall regime exhibits a two-step thermalization process driven by fast electronic channels and slower coupling to phonons and nuclear spins.
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Elevated Hall Responses as Indicators of Edge Reconstruction
Coexistence of upstream charge and neutral modes in multi-terminal geometry for the ν=1 quantum Hall state leads to enhanced electrical and thermal Hall conductances exceeding twice the unreconstructed quantized values.