Rikuto Fukumori

About Rikuto Fukumori

Rikuto Fukumori, With an exceptional h-index of 5 and a recent h-index of 5 (since 2020), a distinguished researcher at California Institute of Technology, specializes in the field of Quantum information, nanophotonics.

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

Study of Many-Body Spin Dynamics and Signatures of Discrete Time Crystal for Clock Transitions in a Solid-State System

Efficiency and noise characterization of an on-chip microwave to optical transducer using 171Yb3+: YVO4 crystals

On-chip Ytterbium based Microwave to Optical Transducer

Many-body cavity quantum electrodynamics with driven inhomogeneous emitters

Characterization of an on-chip microwave to optical transducer using ytterbium-doped crystals

Collective Many-body Effects in 171Yb3+ Ions Embedded in a Solid-state Nanophotonic Cavity

Towards quantum networks with single rare-earth ions in nanophotonic cavities

Collective effects in 171Yb doped in YVO4 coupled to a nanophotonic cavity (II)

Rikuto Fukumori Information

University

Position

___

Citations(all)

85

Citations(since 2020)

85

Cited By

4

hIndex(all)

5

hIndex(since 2020)

5

i10Index(all)

4

i10Index(since 2020)

4

Email

University Profile Page

Google Scholar

Rikuto Fukumori Skills & Research Interests

Quantum information

nanophotonics

Top articles of Rikuto Fukumori

Study of Many-Body Spin Dynamics and Signatures of Discrete Time Crystal for Clock Transitions in a Solid-State System

Bulletin of the American Physical Society

2024/3/7

Efficiency and noise characterization of an on-chip microwave to optical transducer using 171Yb3+: YVO4 crystals

Bulletin of the American Physical Society

2024/3/5

On-chip Ytterbium based Microwave to Optical Transducer

2023/5/7

Many-body cavity quantum electrodynamics with driven inhomogeneous emitters

Nature

2023/4/26

Characterization of an on-chip microwave to optical transducer using ytterbium-doped crystals

APS March Meeting Abstracts

2023

Collective Many-body Effects in 171Yb3+ Ions Embedded in a Solid-state Nanophotonic Cavity

2022/6/13

Towards quantum networks with single rare-earth ions in nanophotonic cavities

2022/3/5

Collective effects in 171Yb doped in YVO4 coupled to a nanophotonic cavity (II)

APS March Meeting Abstracts

2022

New insights into the electronic bands of antiferromagnetic topological insulator MnBi2Te4

APS March Meeting Abstracts

2022

An integrated quantum material testbed with multi-resolution photoemission spectroscopy

Review of Scientific Instruments

2021/11/1

Origins of electronic bands in the antiferromagnetic topological insulator MnBi2Te4

Physical Review B

2021/7/6

Implementation of quantum key distribution and quantum clock synchronization via time bin encoding

2021/3/5

Quantum Interconnect Technologies based on Epitaxial Rare-earth Doped Materials

2020/9/14

Subkilohertz optical homogeneous linewidth and dephasing mechanisms in : ceramics

Physical Review B

2020/6/8

Epitaxial rare-earth on silicon as a scalable quantum photonic platform

2020/5/10

Sub-kilohertz optical homogeneous linewidth in transparent Er3+:Y2O3 ceramics

Bulletin of the American Physical Society

2020/3/3

See List of Professors in Rikuto Fukumori University(California Institute of Technology)