Geometric blockade in a quantum dot coupled to two-dimensional and three dimensional electron gases

Fuente: arXiv
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Main Authors: Yamada, K., Stopa, M., Hatano, T., Yamaguchi, T., Ota, T., Tokura, Y., Tarucha, S.
Format: Preprint
Published: 2026
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author Yamada, K.
Stopa, M.
Hatano, T.
Yamaguchi, T.
Ota, T.
Tokura, Y.
Tarucha, S.
author_facet Yamada, K.
Stopa, M.
Hatano, T.
Yamaguchi, T.
Ota, T.
Tokura, Y.
Tarucha, S.
contents We fabricated a quantum dot coupled laterally to a two-dimensional electron gas and vertically to a three-dimensional electron gas in order to investigate the eigenstate dependence of tunneling rate to these gases. We observed a bias-dependent ``geometric" current blockade. By tunneling via the asymmetric couplings, population inversion is induced and a dark metastable triplet state is revealed. The metastable state stops the current transport process, suppresses the current and asymmetrically widens the Coulomb diamond. By analyzing the current as a function of source-drain and gate voltage and the magnetic field, we concluded that this effect is due to the geometric shape of the electronic states in the dot and the current is limited by the tunneling rate due to the eigenstates, that is, artificial $σ$-coupling and $π$-coupling.
format Preprint
id arxiv_https___arxiv_org_abs_2603_18726
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Geometric blockade in a quantum dot coupled to two-dimensional and three dimensional electron gases
Yamada, K.
Stopa, M.
Hatano, T.
Yamaguchi, T.
Ota, T.
Tokura, Y.
Tarucha, S.
Mesoscale and Nanoscale Physics
We fabricated a quantum dot coupled laterally to a two-dimensional electron gas and vertically to a three-dimensional electron gas in order to investigate the eigenstate dependence of tunneling rate to these gases. We observed a bias-dependent ``geometric" current blockade. By tunneling via the asymmetric couplings, population inversion is induced and a dark metastable triplet state is revealed. The metastable state stops the current transport process, suppresses the current and asymmetrically widens the Coulomb diamond. By analyzing the current as a function of source-drain and gate voltage and the magnetic field, we concluded that this effect is due to the geometric shape of the electronic states in the dot and the current is limited by the tunneling rate due to the eigenstates, that is, artificial $σ$-coupling and $π$-coupling.
title Geometric blockade in a quantum dot coupled to two-dimensional and three dimensional electron gases
topic Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2603.18726