RIKEN Center for Quantum Computing
In research, RIKEN Center for Quantum Computing stands highest in Physical Sciences (#2,601 of 12,888 worldwide), 2022–2025. Relative to its size it is most specialised in Atomic and Molecular Physics, and Optics, Physics and Astronomy and Artificial Intelligence — Atomic and Molecular Physics, and Optics is 53.3× its share of world research.
- World rank, 2022–2025
- #4,634 of 28,054
- Rank in ??
- #57 of 692
- Research works
- 86 fractional, all time
- Citations
- 1.1k 12.8 per fractional work
- Top-10% rate
- 34.8% record average 16.5%
- Open access
- 69% world 28%
What is RIKEN Center for Quantum Computing known for in research?
The fields where it stands highest, 2022–2025, ranked among every institution above the floor in each field.
| Field | World rank | Where that sits | Top-10% rate | Works | All time |
|---|---|---|---|---|---|
| Physical SciencesDomain | #2,601 of 12,888 | 34.8% | 72 | — |
Each strip is that field’s whole ranked pool, with the notch where RIKEN Center for Quantum Computing sits in it, in the colour of the band that rank falls in. The track under the rate is the rate itself: it carries no world mark, because the world rate differs by field (from about 6% to 21% in this record).
What does RIKEN Center for Quantum Computing specialise in?
Where its research is concentrated relative to its size: Atomic and Molecular Physics, and Optics takes 53.3× the share of its output that it takes of world research.
- Atomic and Molecular Physics, and OpticsSubfield · 27.5 works53×
- Physics and AstronomyField · 35.2 works22×
- Artificial IntelligenceSubfield · 26.3 works15×
- Computer ScienceField · 28.3 works5.1×
Location quotient, a volume reading rather than an impact one. It surfaces small, lopsided specialities.
Field profile
Location quotient across every field it publishes in: outside the ring is more than an institution of this size would be expected to publish, inside it is less.
Rings at 0.5×, 1× and 2×. Widest outward: Physics and Astronomy, 22.0×. Every wedge is a field page.
Which keywords describe research at RIKEN Center for Quantum Computing?
By fractional works in 2022–2025, weighted toward what it does more of than the world: Entanglement, Quantum Information, Superconducting Circuits, Cryptography, Quantum, Quantum Simulation, Quantum Algorithms and Quantum Computation.
- Silicon Photonics
- High-Temperature Superconductivity
- Integrated Circuits
- Optical Modulators
- Ultracold Gases
- Optomechanics
- Bose-Einstein Condensation
- Photonic Reservoir Computing
- Slow Light
- Electromagnetically Induced Transparency
- Quantum Thermalization
- Renormalization Group
- Decoherence
- Topological Order
- Electron Spin
- Quantum Computing
- Quantum Computation
- Quantum Simulation
- Cryptography
- Quantum Information
- Entanglement
- Superconducting Circuits
- Quantum
- Quantum Algorithms
- Machine Learning
- Spintronics
- Semiconductor Quantum Dots
- Bell Inequality
- Biosensors
- Many-Body Localization
- Superfluidity
- Nonlinear Dynamics
- Neuromorphic Photonics
- Optical Lattices
- Nanomechanical Systems
- Fermi Gases
- Microcavities
- Electronic Structure Calculations
- Cuprate Superconductors
- Nanophotonic Waveguides
Size is fractional works in 2022–2025 in the topics tagged with each word; colour is the word's share of this institution's work against its share of the world's. The 40 words are chosen for being large and distinctive. Each links to the topic it comes from most.
All 40 words, with their numbers
- Entanglement24▲ 225×4 topics
- Quantum Information15▲ 184×3 topics
- Superconducting Circuits14▲ 292×2 topics
- Cryptography14▲ 160×1 topic
- Quantum14▲ 243×1 topic
- Quantum Simulation11▲ 194×2 topics
- Quantum Algorithms9▲ 237×1 topic
- Quantum Computation9▲ 237×1 topic
- Machine Learning7▲ 2.9×6 topics
- Quantum Computing6▲ 74×2 topics
- Spintronics6▲ 59×2 topics
- Electron Spin5▲ 202×1 topic
- Semiconductor Quantum Dots5▲ 202×1 topic
- Topological Order4▲ 127×2 topics
- Bell Inequality4▲ 160×1 topic
- Decoherence4▲ 160×1 topic
- Biosensors4▲ 10×2 topics
- Renormalization Group4▲ 95×2 topics
- Many-Body Localization4▲ 248×1 topic
- Quantum Thermalization4▲ 248×1 topic
- Superfluidity3▲ 95×2 topics
- Electromagnetically Induced Transparency3▲ 188×1 topic
- Nonlinear Dynamics3▲ 17×2 topics
- Slow Light3▲ 75×1 topic
- Neuromorphic Photonics3▲ 119×1 topic
- Photonic Reservoir Computing3▲ 119×1 topic
- Optical Lattices2▲ 54×3 topics
- Bose-Einstein Condensation2▲ 93×2 topics
- Nanomechanical Systems2▲ 97×1 topic
- Optomechanics2▲ 97×1 topic
- Fermi Gases2▲ 107×1 topic
- Ultracold Gases2▲ 107×1 topic
- Microcavities2▲ 22×2 topics
- Optical Modulators2▲ 17×2 topics
- Electronic Structure Calculations2▲ 36×2 topics
- Integrated Circuits2▲ 15×2 topics
- Cuprate Superconductors2▲ 66×1 topic
- High-Temperature Superconductivity2▲ 66×1 topic
- Nanophotonic Waveguides2▲ 22×1 topic
- Silicon Photonics2▲ 20×1 topic
Which research topics does RIKEN Center for Quantum Computing publish most on?
By volume in 2022–2025: Quantum Information and Cryptography, Quantum Computing Algorithms and Architecture, Quantum and electron transport phenomena and Quantum Mechanics and Applications.
Area is fractional works; colour is the subfield each topic belongs to.
- 1 Quantum Information and Cryptography Artificial Intelligence 14 works
- 2 Quantum Computing Algorithms and Architecture Artificial Intelligence 9 works
- 3 Quantum and electron transport phenomena Atomic and Molecular Physics, and Optics 5 works
- 4 Quantum Mechanics and Applications Atomic and Molecular Physics, and Optics 4 works
- 5 Quantum many-body systems Atomic and Molecular Physics, and Optics 4 works
- 6 Quantum optics and atomic interactions Atomic and Molecular Physics, and Optics 3 works
- 7 Neural Networks and Reservoir Computing Artificial Intelligence 3 works
- 8 Mechanical and Optical Resonators Atomic and Molecular Physics, and Optics 2 works
- 9 Cold Atom Physics and Bose-Einstein Condensates Atomic and Molecular Physics, and Optics 2 works
- 10 Physics of Superconductivity and Magnetism Condensed Matter Physics 2 works
How open and international is its research?
Against the world’s own shares — the tick on each track. Both are shares of its output, so they sit on one scale and can be read against each other as well as against the world.
World: 28% of research is openly available.
World: 19% is written across borders.
How has RIKEN Center for Quantum Computing's research output changed?
The same series as a ribbon — one cell per year, darker for more. The line above answers how much; this answers when.
Other research institutions in Saitama
Research measures only: rankings here say nothing about teaching, admissions or student experience. Comparable institutions and collaboration partners are in the interactive view on the map.