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MAGO Program

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Summary

Magnetized target fusion program at VNIIEF/Arzamas-16. Collaborated with LANL from 1992-2003. Represents the nuclear weapons establishment's entry into compact fusion — the same physics underlying plasma weapons.

Deep Dive Analysis

Intelligence Summary: MAGO Program

Node Identity: The MAGO (Magnetized Target Fusion) program at VNIIEF/Arzamas-16 is Russia's nuclear weapons establishment's entry into compact fusion research — the same physics underlying plasma weapons. MAGO collaborated with Los Alamos National Laboratory (LANL) from 1992-2003, representing the most significant US-Russia scientific exchange channel between the two nations' nuclear weapons laboratories on magnetized target fusion physics. The program is funded by Rosatom and hosted at VNIIEF, Russia's premier nuclear weapons laboratory.

Strategic Relevance: MAGO's strategic significance lies in its position at the intersection of nuclear weapons physics and plasma weapons physics. The program utilizes explosive pulsed power — the same technology used in nuclear weapons — to generate the extreme magnetic fields (up to 240 kG) necessary for magnetized target fusion ignition. This creates a direct technological bridge between Russia's nuclear weapons complex and its plasma weapons ambitions. The 1992-2003 LANL collaboration provided a sustained channel for US-Russia scientific exchange on compact fusion, with both sides gaining insights into each other's nuclear weapons-relevant plasma physics capabilities. MAGO represents the magnetized target fusion regime — an intermediate density pathway between traditional magnetic confinement fusion (MCF) and inertial confinement fusion (ICF) — that is directly applicable to compact toroid weapons.

Technical Focus / Capabilities: MAGO's technical portfolio encompasses: (1) Magnetized target fusion (MTF) — using explosive flux compression generators to create extreme magnetic fields for plasma compression; (2) Explosive pulsed power — the same technology used in nuclear weapons, adapted for fusion driver applications; (3) Compact fusion physics — investigating the intermediate density regime between MCF and ICF; (4) FRC/Field-Reversed Configuration research — the plasma physics underlying all compact toroid programs; (5) Pulsed power technology — the core enabling technology shared between energy and weapons applications. The program's use of explosive flux compression generators (up to 240 kG) demonstrates capabilities directly transferable to weapons-grade pulsed power systems.

Network Linkage: MAGO maintains 5 documented connections: hosted by VNIIEF/Arzamas-16; originates the LANL MAGO Collaboration (1992-2003); investigates FRC/Field-Reversed Configuration physics; uses Pulsed Power Technology; and receives funding from Rosatom. The LANL MAGO Collaboration is the critical international linkage, creating a decade-long scientific exchange between US and Russian nuclear weapons laboratories on compact fusion physics.

Key Findings

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Related Entities (5)

Network Graph

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Glossary Definition

Magnetized target fusion program at VNIIEF/Arzamas-16. Collaborated with LANL from 1992-2003. Represents the nuclear weapons establishment's entry into compact fusion — the same physics underlying pla

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Research References

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Frequently Asked Questions

What is MAGO Program?
Magnetized target fusion program at VNIIEF/Arzamas-16. Collaborated with LANL from 1992-2003. Represents the nuclear weapons establishment's entry into compact fusion — the same physics underlying plasma weapons.
What is MAGO Program connected to?
MAGO Program is directly connected to 5 entities in the network graph, including VNIIEF / Arzamas-16, LANL MAGO Collaboration, FRC / Field-Reversed Configuration. These connections represent documented relationships such as Hosts, Originates, Investigates. Explore the full network using the interactive graph for complete relationship mapping.
Where can I find more details about MAGO Program?
A full intelligence dossier is available for MAGO Program, including 0 source documents, deep-dive analysis, and network linkage assessment. Visit the dossier page for the complete profile.

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