UNIVERSITY · Japan Graph

University of Tokyo

UNIVERSITY Japan Graph Dossier Available

Summary

Professor Ono's group developed novel 'merging formation' of FRC by colliding spheromaks, transforming them into ultra-high-beta spherical tokamaks.

Deep Dive Analysis

Intelligence Summary: University of Tokyo

Node Identity: University of Tokyo is a organisation categorized under "University" in the japan intelligence graph. Professor Ono's group developed novel 'merging formation' of FRC by colliding spheromaks, transforming them into ultra-high-beta spherical tokamaks.

Research Evidence: The following findings from 8 research documents reference this entity:

  1. Bellan) - Assistant Professor, Aeronautics & Astronautics, University of Washington - Associate Professor, University of Tokyo - Co-founder Helicity Space (2018) Research focus: "Magnetic reconnection-heating, vector tomography, compact toroids, Taylor states, and plasma flows." Key publications: - "Helicity Drive: A Novel Scalable Fusion Concept for Deep Space Propulsion" (AIAA 2020) - "Observations of a plectonemic configuration in a stable magnetized plasma jet" (Phys.
  2. Kawamori collaborates with Japan's National Institute for Fusion Science and University of Tokyo on EBW plasma heating diagnostics ### Assessment: NCKU is Taiwan's premier plasma physics institution with genuine experimental capability — not merely theoretical.
  3. University of TokyoTS-3/TS-4 Merging Experiments: Professor Ono's group developed a novel "merging formation" of FRC by colliding two force-free spheromaks with opposing toroidal fields, transforming them into an oblate FRC with beta ~0.6–1.0 using magnetic reconnection energy conversion.
  4. TAE Technologies Collaboration: Japanese researchers from Nihon University, University of Tokyo, Osaka University, Gunma University, and NIFS have published jointly with TAE Technologies, Inc.
  5. The active FRC research community (Nihon University, University of Tokyo) with TAE Technologies collaboration represents a potential node for compact toroid weapons-relevant research, though no direct weapons application has been documented.
  6. UCHIDA Department of Nuclear Engineering, Faculty of Engineering, University of Tokyo, Tokyo R.
  7. of Electronic Engineering, University of Tokyo, Tokyo, Japan) 1.

Strategic Relevance: University of Tokyo functions as an institutional node in the japan network. With 4 documented connections to other entities, this node plays a significant role in the network topology.

Network Linkage: This entity maintains 4 documented connections in the intelligence network: University of Tokyo operator TS-3/TS-4; University of Tokyo collaboration TAE Technologies; TAE Technologies collaboration University of Tokyo; TS-3/TS-4 operator University of Tokyo.

Source Documents: Evidence compiled from: FINDINGS_FROM_research-prompts-round11.md, FINDINGS_FROM_research-prompts-round86.md, FINDINGS_FROM_research-prompts-round93.md, IAEA_Fusion_Research_Vol2_1983.pdf, IAEA_PlasmaPhysicsFusionResearchVol2_1983.pdf, PPPL_Compact_Toruses_1979.pdf, PPPL_Compact_Toruses_Symposium_1979.pdf, Sherwood_Meeting_Thermonuclear_Fusion_1979.pdf.

Key Findings

  • " **Key publications:** - "Helicity Drive: A Novel Scalable Fusion Concept for Deep Space Propulsion" (AIAA 2020) - "Observations of a plectonemic configuration in a stable magnetized plasma jet" (Phys.
  • Professor Ono's group developed novel 'merging formation' of FRC by colliding spheromaks, transforming them into ultra-high-beta spherical tokamaks.
  • **Research Evidence:** The following findings from 8 research documents reference this entity: 1.

Citations (9)

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  3. [3]
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  5. [5]
  6. [6]
  7. [7]
  8. [8] (1979) — Princeton Plasma Physics Laboratory
  9. [9] (1998) — Department of Electrical Engineering, University of Tokyo

Related Entities (2)

Network Graph

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Glossary Definition

Professor Ono's group developed novel 'merging formation' of FRC by colliding spheromaks, transforming them into ultra-high-beta spherical tokamaks.

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Source Documents (1)

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Frequently Asked Questions

What is University of Tokyo?
Professor Ono's group developed novel 'merging formation' of FRC by colliding spheromaks, transforming them into ultra-high-beta spherical tokamaks.
What is University of Tokyo connected to?
University of Tokyo is directly connected to 2 entities in the network graph, including TS-3/TS-4, TAE Technologies. These connections represent documented relationships such as operator, collaboration. Explore the full network using the interactive graph for complete relationship mapping.
Where can I find more details about University of Tokyo?
A full intelligence dossier is available for University of Tokyo, including 1 source document, deep-dive analysis, and network linkage assessment. Visit the dossier page for the complete profile.

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