IR-MPF-100
Demonstrates indigenous Iranian capacity for high-energy pulsed power and dense plasma focus research.
01 Definition
A 115 kJ Mather-type dense plasma focus device developed at Iran's AEOI/NSTRI, serving as the country's flagship pulsed power research platform.
02 Detailed_Analysis
The IR-MPF-100 is an indigenously designed and constructed 115 kJ Mather-type dense plasma focus (DPF) machine operated by the Plasma and Nuclear Fusion Research School at the Atomic Energy Organization of Iran (AEOI). Operating at charging voltages up to 20 kV with deuterium gas, it generates neutron yields reported at 1.238 × 10^9 neutrons per shot. It represents a significant benchmark in Iran's high-energy pulsed power and dense plasma physics capabilities.
03 Key_Facts
- ▸ Operates at up to 115 kJ stored energy and 20 kV charging voltage
- ▸ Produces reported deuterium-deuterium yields of 1.238 × 10^9 neutrons/shot
- ▸ Flagship dense plasma focus facility operated by AEOI/NSTRI in Tehran
04 Deep_Dive_Intelligence
Intelligence Summary: IR-MPF-100 (Iranian Mather-type Plasma Focus, 100)
Node Identity: The IR-MPF-100 is Iran's flagship plasma focus device — a 115 kJ Mather-type plasma focus machine designed and constructed indigenously at the AEOI/NSTRI Plasma and Nuclear Fusion Research School. It is the first Iranian plasma focus (PF) device at this energy scale, representing a significant milestone in Iran's pulsed power and dense plasma focus engineering capability. The device produces neutron yields of approximately 1.238 × 10^9 neutrons/shot when operated with deuterium gas at 20 kV charging voltage (~30 kJ stored energy).
Strategic Relevance: The IR-MPF-100 is a significant dual-use technology platform. Plasma focus devices are well-known dual-use technologies that serve as compact, pulsed neutron sources useful for neutron radiography, materials testing, and potentially for nuclear weapons component diagnostics — including neutron initiation and implosion testing. The ~10^9 neutrons/shot yield represents a substantial neutron source with clear weapons-relevant applications. The device has been extensively characterized for neutron yield, soft X-ray emission, and radiation dosimetry, with published MCNP dose analysis and biological shield design studies. A planned 500 kJ Mather-type PF device with triple-part anode design targeting 10^11 neutrons/shot would represent an even more substantial neutron source. The fact that all devices are indigenously designed and constructed demonstrates significant Iranian capability in pulsed power engineering and plasma diagnostics — capabilities directly relevant to nuclear weapons component testing infrastructure.
Technical Focus / Capabilities: The IR-MPF-100 operates as a Mather-type plasma focus with 115 kJ maximum stored energy. Key research includes neutron yield optimization (published in Plasma Physics and Controlled Fusion), soft X-ray emission studies, MCNP radiation dose analysis, and biological shield design simulation. The device's neutron yield of 1.238 × 10^9 n/shot at 20 kV has been validated through both experimental measurement and numerical simulation. The planned 500 kJ successor device with triple-part anode design targets 10^11 neutrons/shot — a two-order-of-magnitude increase that would significantly enhance weapons-relevant neutron source capability.
Network Linkage: The IR-MPF-100 is operated by both AEOI and the Plasma and Fusion Research School. It is part of Iran's multi-device plasma focus program alongside SORENA-1 (20 J repetitive), MTPF (ion beam characterization), and Dena plasma focus (historical device). The planned 500 kJ successor device represents an escalation pathway within the same institutional framework.
06 Related_Terms (2)
09 FAQ
What is IR-MPF-100? ▾
Why does IR-MPF-100 matter? ▾
How does IR-MPF-100 relate to other concepts? ▾
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Quick_Facts
- Category
- Facilities
- Aliases
- IR-MPF-100, ir-mpf-100, Iranian Mather-type Plasma Focus 100
- Sources
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- Related Terms
- 2