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Observation of neutral modes in the fractional quantum Hall regime

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arxiv 1005.5724 v1 pith:IDXI25K7 submitted 2010-05-31 cond-mat.mes-hall

Observation of neutral modes in the fractional quantum Hall regime

classification cond-mat.mes-hall
keywords modemodesneutralfillinginjectingobservationregimeaddition
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In the quantum Hall effect regime, taking place in a two-dimensional-electron gas under strong magnetic field, currents flow along the edges of the sample. For some particle-hole conjugate states of the fractional regime, e.g., with filling between 1/2 and 1 of the lowest Landau level; early predictions suggested the presence of counter-propagating edge currents in addition to the expected ones. When this did not agree with the measured conductance, it was suggested that disorder and interactions will lead to counterpropagating modes that carry only energy - the so called neutral modes. In addition, a neutral upstream mode (Majorana mode) was also expected for selected wavefunctions proposed for the even denominator filling 5/2. Here we report on the direct observation of counter-propagating neutral modes in fillings 2/3, 3/5 and 5/2. This was done by injecting such modes and allowing them to impinge on a narrow constriction, which partly reflected them, with two main observed effects: (a) A resultant shot noise proportional to the applied voltage on the injecting contact; (b) With simultaneously injecting also a charge mode, the presence of the neutral mode was found to significantly affect the Fano factor and the temperature of the backscattered charge mode. In particular, such observation for filling 5/2, may single out the non-abelian wavefunctions for the state.

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  1. Testing edge chirality with a three-path fractional quantum Hall interferometer

    cond-mat.mes-hall 2026-07 accept novelty 7.0

    A cubic Aharonov-Bohm three-path interferometer isolates downstream vs upstream edge response and reconstructs charge, scaling dimension, and exchange angle of the tunneling vertex.