collaborators

5 papers

cond-mat.mes-hall2025

Quantum dot transistors based on CVD-grown graphene nano islands

Takumi Seo, Motoya Shinozaki, Akiko Tada +8

Graphene nanoislands (GNIs) are one of the promising building blocks for quantum devices owing to their unique potential. However, direct electrical measurements of GNIs have been…

cond-mat.mes-hall2025

Formation of multiple quantum dots in ZnO heterostructures

Koichi Baba, Kosuke Noro, Yusuke Kozuka +4

In recent years, advancements in semiconductor manufacturing technology have enabled the formation of high-quality, high-mobility two-dimensional electron gases in zinc oxide (ZnO)…

cond-mat.mes-hall2025

RFSoC-based radio-frequency reflectometry in gate-defined bilayer graphene quantum devices

Motoya Shinozaki, Tomoya Johmen, Aruto Hosaka +8

Quantum computers require both scalability and high performance for practical applications. While semiconductor quantum dots are promising candidates for quantum bits, the complexi…

cond-mat.mes-hall2025

Automatic detection of single-electron regime of quantum dots and definition of virtual gates using U-Net and clustering

Yui Muto, Michael R. Zielewski, Motoya Shinozaki +2

To realize practical quantum computers, a large number of quantum bits (qubits) will be required. Semiconductor spin qubits offer advantages such as high scalability and compatibil…

cond-mat.mes-hall2025

Charge sensing of few-electron ZnO double quantum dots probed by radio-frequency reflectometry

Kosuke Noro, Motoya Shinozaki, Yusuke Kozuka +6

Zinc oxide (ZnO) has garnered much attention as a promising material for quantum devices due to its unique characteristics. To utilize the potential of ZnO for quantum devices, the…