Anomalous Transport in Sketched Nanostructures at the LaAlO_{3}/SrTiO_{3} Interface
The oxide heterostructure LaAlO_{3}/SrTiO_{3} supports a two-dimensional electron liquid with a variety of competing phases, including magnetism, superconductivity, and weak antilocalization because of Rashba spin-orbit coupling. Further confinement of this two-dimensional electron liquid to the qua...
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American Physical Society
2013-03-01
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Series: | Physical Review X |
Online Access: | http://doi.org/10.1103/PhysRevX.3.011021 |
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doaj-7354f236ed39407fb0483a4377a474b92020-11-24T22:00:34ZengAmerican Physical SocietyPhysical Review X2160-33082013-03-013101102110.1103/PhysRevX.3.011021Anomalous Transport in Sketched Nanostructures at the LaAlO_{3}/SrTiO_{3} InterfaceGuanglei ChengJoshua P. VeazeyPatrick IrvinCheng CenDaniela F. BogorinFeng BiMengchen HuangShicheng LuChung-Wung BarkSangwoo RyuKwang-Hwan ChoChang-Beom EomJeremy LevyThe oxide heterostructure LaAlO_{3}/SrTiO_{3} supports a two-dimensional electron liquid with a variety of competing phases, including magnetism, superconductivity, and weak antilocalization because of Rashba spin-orbit coupling. Further confinement of this two-dimensional electron liquid to the quasi-one-dimensional regime can provide insight into the underlying physics of this system and reveal new behavior. Here, we describe magnetotransport experiments on narrow LaAlO_{3}/SrTiO_{3} structures created by a conductive atomic force microscope lithography technique. Four-terminal local-transport measurements on Hall bar structures about 10 nm wide yield longitudinal resistances that are comparable to the resistance quantum h/e^{2} and independent of the channel length. Large nonlocal resistances (as large as 10^{4} Ω) are observed in some but not all structures with separations between current and voltage that are large compared to the two-dimensional mean-free path. The nonlocal transport is strongly suppressed by the onset of superconductivity below about 200 mK. The origin of these anomalous transport signatures is not understood, but may arise from coherent transport defined by strong spin-orbit coupling and/or magnetic interactions.http://doi.org/10.1103/PhysRevX.3.011021 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Guanglei Cheng Joshua P. Veazey Patrick Irvin Cheng Cen Daniela F. Bogorin Feng Bi Mengchen Huang Shicheng Lu Chung-Wung Bark Sangwoo Ryu Kwang-Hwan Cho Chang-Beom Eom Jeremy Levy |
spellingShingle |
Guanglei Cheng Joshua P. Veazey Patrick Irvin Cheng Cen Daniela F. Bogorin Feng Bi Mengchen Huang Shicheng Lu Chung-Wung Bark Sangwoo Ryu Kwang-Hwan Cho Chang-Beom Eom Jeremy Levy Anomalous Transport in Sketched Nanostructures at the LaAlO_{3}/SrTiO_{3} Interface Physical Review X |
author_facet |
Guanglei Cheng Joshua P. Veazey Patrick Irvin Cheng Cen Daniela F. Bogorin Feng Bi Mengchen Huang Shicheng Lu Chung-Wung Bark Sangwoo Ryu Kwang-Hwan Cho Chang-Beom Eom Jeremy Levy |
author_sort |
Guanglei Cheng |
title |
Anomalous Transport in Sketched Nanostructures at the LaAlO_{3}/SrTiO_{3} Interface |
title_short |
Anomalous Transport in Sketched Nanostructures at the LaAlO_{3}/SrTiO_{3} Interface |
title_full |
Anomalous Transport in Sketched Nanostructures at the LaAlO_{3}/SrTiO_{3} Interface |
title_fullStr |
Anomalous Transport in Sketched Nanostructures at the LaAlO_{3}/SrTiO_{3} Interface |
title_full_unstemmed |
Anomalous Transport in Sketched Nanostructures at the LaAlO_{3}/SrTiO_{3} Interface |
title_sort |
anomalous transport in sketched nanostructures at the laalo_{3}/srtio_{3} interface |
publisher |
American Physical Society |
series |
Physical Review X |
issn |
2160-3308 |
publishDate |
2013-03-01 |
description |
The oxide heterostructure LaAlO_{3}/SrTiO_{3} supports a two-dimensional electron liquid with a variety of competing phases, including magnetism, superconductivity, and weak antilocalization because of Rashba spin-orbit coupling. Further confinement of this two-dimensional electron liquid to the quasi-one-dimensional regime can provide insight into the underlying physics of this system and reveal new behavior. Here, we describe magnetotransport experiments on narrow LaAlO_{3}/SrTiO_{3} structures created by a conductive atomic force microscope lithography technique. Four-terminal local-transport measurements on Hall bar structures about 10 nm wide yield longitudinal resistances that are comparable to the resistance quantum h/e^{2} and independent of the channel length. Large nonlocal resistances (as large as 10^{4} Ω) are observed in some but not all structures with separations between current and voltage that are large compared to the two-dimensional mean-free path. The nonlocal transport is strongly suppressed by the onset of superconductivity below about 200 mK. The origin of these anomalous transport signatures is not understood, but may arise from coherent transport defined by strong spin-orbit coupling and/or magnetic interactions. |
url |
http://doi.org/10.1103/PhysRevX.3.011021 |
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