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Main Authors: Purkait, Suvankar, Maiti, Tanmay, Agarwal, Pooja, Sahoo, Suparna, J., Sreejith G., Das, Sourin, Biasiol, Giorgio, Sorba, Lucia, Karmakar, Biswajit
Format: Preprint
Published: 2024
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Online Access:https://arxiv.org/abs/2411.06840
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author Purkait, Suvankar
Maiti, Tanmay
Agarwal, Pooja
Sahoo, Suparna
J., Sreejith G.
Das, Sourin
Biasiol, Giorgio
Sorba, Lucia
Karmakar, Biswajit
author_facet Purkait, Suvankar
Maiti, Tanmay
Agarwal, Pooja
Sahoo, Suparna
J., Sreejith G.
Das, Sourin
Biasiol, Giorgio
Sorba, Lucia
Karmakar, Biswajit
contents Edge reconstruction of gate-tunable compressible quantum Hall fluids in the filling fraction range 1/3 to 2/3 is studied by measuring transmitted conductance of two individually excited fractional $e^2/3h$ edge modes of bulk 2/3 fractional quantum Hall fluid. Our findings reveal that the measured transmitted conductance deviates from the fully equilibrated value for the filling fraction range 1/3 to 2/3 of the gate-tunable compressible quantum Hall fluids at higher magnetic fields. This observation suggests that at the boundary of the compressible fluid a reconstructed $e^2/3h$ fractional edge mode is present and the mode does not completely equilibrate with the inner dissipative bulk region. Consequently, this outer reconstructed edge mode supports adiabatic charge transport, allowing non-equilibrated current transport through the compressible region. These studies open new avenues for achieving robust fractional edge modes even in compressible quantum Hall fluids under strong magnetic fields, enhancing our understanding of edge state dynamics in these complex systems.
format Preprint
id arxiv_https___arxiv_org_abs_2411_06840
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Edge reconstruction of compressible Quantum Hall fluid in the filling fraction range 1/3 to 2/3
Purkait, Suvankar
Maiti, Tanmay
Agarwal, Pooja
Sahoo, Suparna
J., Sreejith G.
Das, Sourin
Biasiol, Giorgio
Sorba, Lucia
Karmakar, Biswajit
Mesoscale and Nanoscale Physics
Edge reconstruction of gate-tunable compressible quantum Hall fluids in the filling fraction range 1/3 to 2/3 is studied by measuring transmitted conductance of two individually excited fractional $e^2/3h$ edge modes of bulk 2/3 fractional quantum Hall fluid. Our findings reveal that the measured transmitted conductance deviates from the fully equilibrated value for the filling fraction range 1/3 to 2/3 of the gate-tunable compressible quantum Hall fluids at higher magnetic fields. This observation suggests that at the boundary of the compressible fluid a reconstructed $e^2/3h$ fractional edge mode is present and the mode does not completely equilibrate with the inner dissipative bulk region. Consequently, this outer reconstructed edge mode supports adiabatic charge transport, allowing non-equilibrated current transport through the compressible region. These studies open new avenues for achieving robust fractional edge modes even in compressible quantum Hall fluids under strong magnetic fields, enhancing our understanding of edge state dynamics in these complex systems.
title Edge reconstruction of compressible Quantum Hall fluid in the filling fraction range 1/3 to 2/3
topic Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2411.06840