Julong-2 Pulsed Power ICF Facility
50 MA pulsed-power Z-pinch ICF driver at CAEP Mianyang
01 Executive_Summary
Julong-2 is a 50 MA pulsed-power Z-pinch inertial confinement fusion (ICF) driver at CAEP Mianyang. One of the world's most powerful pulsed power facilities, comparable to the US Sandia Z Machine. Dual-use: weapons physics simulation and Z-FFR driver technology. Part of China's comprehensive ICF ecosystem.
02 Definition
03 Deep_Dive_Intelligence
Julong-2 (Chinese: 聚龙-2, meaning 'Gathering Dragon 2') is a 50 mega-ampere (MA) pulsed-power Z-pinch inertial confinement fusion (ICF) driver at the China Academy of Engineering Physics (CAEP) in Mianyang. Julong-2 is one of the world's most powerful pulsed power facilities, comparable to the US Sandia Z Machine.
Key aspects of Julong-2:
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50 MA capability: At 50 MA, Julong-2 is among the most powerful pulsed power drivers in the world. The US Sandia Z Machine operates at approximately 26 MA. The high current enables powerful Z-pinch compression of plasma for ICF and weapons physics experiments.
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Z-pinch ICF: Julong-2 uses the Z-pinch approach to ICF, where a powerful electrical current creates a magnetic field that compresses a plasma column (or wire array) to extreme densities and temperatures. This approach is complementary to laser ICF (Shenguang-IV) and magnetic confinement (EAST, BEST, CFETR).
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Dual-use applications:
- Weapons physics simulation: Z-pinch ICF is used to simulate nuclear weapons physics, particularly the radiation-hydrodynamics of nuclear explosions
- Z-FFR driver: Julong-2 technology is directly relevant to the Z-FFR (Z-pinch Fusion-Fission Reactor) concept, which uses a Z-pinch driver to create fusion neutrons for a fission blanket
- Materials science: The extreme conditions created by Z-pinch can be used to study materials under high energy density conditions
- The US Sandia Z Machine (~26 MA) is the world's most powerful operational Z-pinch, but is primarily a weapons stewardship facility
- Julong-2 at 50 MA would exceed the Z Machine's current capability if fully operational
- China is effectively pursuing Z-pinch technology that the US has kept in the weapons domain, with an energy production goal (Z-FFR)
- This represents a significant technology development pathway
- CAEP Mianyang ecosystem: Julong-2 is part of the comprehensive CAEP Mianyang pulsed power ecosystem:
- Julong-2 (50 MA) — primary Z-pinch driver
- Qiangguang-1 (1 MA) — supporting pulsed power
- PTS (8-10 MA) — Primary Test Stand
- Shenguang-III and Shenguang-IV — laser ICF
- This concentration of pulsed power and ICF capability is unique outside the US
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Connection to Z-FFR: Julong-2 is the technology basis for the Z-FFR (Z-pinch Fusion-Fission Reactor) concept. Z-FFR would use a Z-pinch driver similar to Julong-2 to create fusion neutrons for a subcritical fission blanket. The environmental impact assessment for Z-FFR began in March 2025, with superconducting material orders in December 2025.
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Strategic significance:
- Julong-2 demonstrates China's comprehensive ICF capability across both laser and Z-pinch approaches
- The 50 MA capability exceeds the US Sandia Z Machine, potentially giving China a Z-pinch advantage
- The dual-use nature (weapons + energy) is amplified by China's Military-Civil Fusion policy
- Julong-2 technology directly supports the Z-FFR energy reactor concept
- The facility represents a significant investment in Chinese high energy density physics
Julong-2 is a critical component of China's ICF and pulsed power capability. The 50 MA capability, combined with the Z-FFR energy application, demonstrates China's commitment to pursuing Z-pinch technology for both weapons stewardship and energy production — a pathway that the US has not pursued for energy.
04 Network_Linkage
Julong-2 connects to CAEP Mianyang (operator), Z-FFR (energy application), Shenguang-IV (complementary laser ICF), Qiangguang-1 and PTS (supporting pulsed power), and the US Sandia Z Machine (peer facility).
05b Related_Topics (1)
06 Research_Findings (1)
50 MA pulsed power Z-pinch at CAEP, comparable to US Sandia Z Machine, Z-FFR driver technology.
07 Key_Findings
- ▸ Weapons physics simulation: Z-pinch ICF is used to simulate nuclear weapons physics, particularly the radiation-hydrodynamics of nuclear explosions
- ▸ Z-FFR driver: Julong-2 technology is directly relevant to the Z-FFR (Z-pinch Fusion-Fission Reactor) concept, which uses a Z-pinch driver to create fusion neutrons for a fission blanket
- ▸ Materials science: The extreme conditions created by Z-pinch can be used to study materials under high energy density conditions
- ▸ The US Sandia Z Machine (~26 MA) is the world's most powerful operational Z-pinch, but is primarily a weapons stewardship facility
- ▸ Julong-2 at 50 MA would exceed the Z Machine's current capability if fully operational
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Type: facility
Region: East Asia
Last updated: Research database snapshot