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Main Authors: Hamada, Masayuki, Haze, Masahiro, Okazaki, Junya, Hasegawa, Yukio
Format: Preprint
Published: 2025
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Online Access:https://arxiv.org/abs/2505.21059
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author Hamada, Masayuki
Haze, Masahiro
Okazaki, Junya
Hasegawa, Yukio
author_facet Hamada, Masayuki
Haze, Masahiro
Okazaki, Junya
Hasegawa, Yukio
contents Investigation of transport properties is fundamental for characterizing electronic properties and phase transitions. However, most of the transport measurements on conductive layers have been performed at macroscopic scales, and thus the development of microscopic methods to measure transport is important. Scanning tunneling potentiometry (STP) is a powerful tool for investigating surface conductivity at nano-scale spatial resolutions. However, it is still challenging to conduct STP studies at low temperatures and most of the low-temperature studies were performed on samples that were prepared ex-situ. In this study, we developed a low-temperature STP and demonstrated its performance on monoatomic metal films formed on Si(111) substrates that were prepared in-situ. Stable operation at low temperatures enables us to extract the electrochemical potential originating from the surface transport by canceling out the potential due to thermal differences and artifacts arising from the nonlinearity of the density of states (DOS). We also formulated the nonlinear-DOS artifact and confirmed it by comparing with the nonlinearity obtained by scanning tunneling spectroscopy.
format Preprint
id arxiv_https___arxiv_org_abs_2505_21059
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle In-situ nanoscale transport measurements on monoatomic metal films by low-temperature scanning tunneling potentiometry
Hamada, Masayuki
Haze, Masahiro
Okazaki, Junya
Hasegawa, Yukio
Mesoscale and Nanoscale Physics
Investigation of transport properties is fundamental for characterizing electronic properties and phase transitions. However, most of the transport measurements on conductive layers have been performed at macroscopic scales, and thus the development of microscopic methods to measure transport is important. Scanning tunneling potentiometry (STP) is a powerful tool for investigating surface conductivity at nano-scale spatial resolutions. However, it is still challenging to conduct STP studies at low temperatures and most of the low-temperature studies were performed on samples that were prepared ex-situ. In this study, we developed a low-temperature STP and demonstrated its performance on monoatomic metal films formed on Si(111) substrates that were prepared in-situ. Stable operation at low temperatures enables us to extract the electrochemical potential originating from the surface transport by canceling out the potential due to thermal differences and artifacts arising from the nonlinearity of the density of states (DOS). We also formulated the nonlinear-DOS artifact and confirmed it by comparing with the nonlinearity obtained by scanning tunneling spectroscopy.
title In-situ nanoscale transport measurements on monoatomic metal films by low-temperature scanning tunneling potentiometry
topic Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2505.21059