Jun Yoneda

About Jun Yoneda

Jun Yoneda, With an exceptional h-index of 26 and a recent h-index of 23 (since 2020), a distinguished researcher at Tokyo Institute of Technology, specializes in the field of Qauntum computing, Spin qubits.

His recent articles reflect a diverse array of research interests and contributions to the field:

Visual explanations of machine learning model estimating charge states in quantum dots

Spatio-temporal recognition of charge noise sources in 28Si/SiGe spin qubits

Adiabatic Electron Spin Resonance Inversion in an FDSOI Quantum Dot Array

Cryogenic flip-chip interconnection for silicon qubit devices

Single-electron pump in a quantum dot array for silicon quantum computers

Noise-correlation spectrum for a pair of spin qubits in silicon

Spatial noise correlations beyond nearest neighbors in Si-Ge spin qubits

Single-electron transistor operation of a physically defined silicon quantum dot device fabricated by electron beam lithography employing a negative-tone resist

Jun Yoneda Information

University

Position

___

Citations(all)

2546

Citations(since 2020)

2092

Cited By

1252

hIndex(all)

26

hIndex(since 2020)

23

i10Index(all)

29

i10Index(since 2020)

28

Email

University Profile Page

Google Scholar

Jun Yoneda Skills & Research Interests

Qauntum computing

Spin qubits

Top articles of Jun Yoneda

Visual explanations of machine learning model estimating charge states in quantum dots

APL Machine Learning

2024/6/1

Spatio-temporal recognition of charge noise sources in 28Si/SiGe spin qubits

Bulletin of the American Physical Society

2024/3/8

Adiabatic Electron Spin Resonance Inversion in an FDSOI Quantum Dot Array

Bulletin of the American Physical Society

2024/3/7

Jun Yoneda
Jun Yoneda

H-Index: 18

Tetsuo Kodera
Tetsuo Kodera

H-Index: 13

Cryogenic flip-chip interconnection for silicon qubit devices

Japanese Journal of Applied Physics

2024/2/8

Single-electron pump in a quantum dot array for silicon quantum computers

Japanese Journal of Applied Physics

2023/1/10

Jun Yoneda
Jun Yoneda

H-Index: 18

Tetsuo Kodera
Tetsuo Kodera

H-Index: 13

Noise-correlation spectrum for a pair of spin qubits in silicon

Nature Physics

2023/12

Spatial noise correlations beyond nearest neighbors in Si-Ge spin qubits

Physical Review Applied

2023/11/9

Single-electron transistor operation of a physically defined silicon quantum dot device fabricated by electron beam lithography employing a negative-tone resist

IEICE Transactions on Electronics

2023/10/1

Jun Yoneda
Jun Yoneda

H-Index: 18

Tetsuo Kodera
Tetsuo Kodera

H-Index: 13

Contact pad design considerations for semiconductor qubit devices for reducing on-chip microwave crosstalk

IEICE Transactions on Electronics

2023/10/1

Jun Yoneda
Jun Yoneda

H-Index: 18

Tetsuo Kodera
Tetsuo Kodera

H-Index: 13

Advanced quantum processing systems and methods

2023/8/24

Single-Electron Charge Sensor Self-Aligned to a Quantum Dot Array by Double-Gate Patterning Process for a Large-Scale Silicon Quantum Computer

2023/6/11

Jun Yoneda
Jun Yoneda

H-Index: 18

Tetsuo Kodera
Tetsuo Kodera

H-Index: 13

Feedback-based active reset of a spin qubit in silicon

npj Quantum Information

2023/6/1

Takashi Kobayashi
Takashi Kobayashi

H-Index: 8

Jun Yoneda
Jun Yoneda

H-Index: 18

Mixed-mode RF reflectometry of quantum dots for reduction of crosstalk effects

Japanese Journal of Applied Physics

2023/3/3

Evaluation of a physically defined silicon quantum dot for design of matching circuit for RF reflectometry charge sensing

AIP Advances

2023/3/1

Control of dephasing in spin qubits during coherent transport in silicon

Physical Review B

2023/2/27

Bayesian estimation of correlation functions

Physical Review Research

2022/12/6

Jun Yoneda
Jun Yoneda

H-Index: 18

Daniel Loss
Daniel Loss

H-Index: 59

Fast Bayesian tomography of a two-qubit gate set in silicon

Physical Review Applied

2022/2/25

Designs for a two-dimensional Si quantum dot array with spin qubit addressability

Scientific Reports

2021/9/30

Quantum tomography of an entangled three-qubit state in silicon

Nature Nanotechnology

2021/9

Jun Yoneda
Jun Yoneda

H-Index: 18

Takashi Kobayashi
Takashi Kobayashi

H-Index: 8

Coherent spin qubit transport in silicon

Nature communications

2021/7/5

Jun Yoneda
Jun Yoneda

H-Index: 18

William Gilbert
William Gilbert

H-Index: 7

See List of Professors in Jun Yoneda University(Tokyo Institute of Technology)