Burevestnik Nuclear-Powered Cruise Missile
World's first nuclear-powered atmospheric cruise missile — unlimited range
01 Executive_Summary
Burevestnik (NATO: SSC-X-9 Skyfall) is the world's first nuclear-powered atmospheric cruise missile, designated 9M730. Successful test October 21, 2025: 14,000 km range, 15 hours flight. Putin declared 'decisive tests complete.' Designed by Moscow Institute of Thermal Technology with nuclear propulsion by Keldysh Research Center. Unlimited range enables unpredictable attack trajectories.
02 Definition
03 Deep_Dive_Intelligence
Burevestnik (Russian: Буревестник, meaning 'Petrel' — a seabird) is the world's first nuclear-powered atmospheric cruise missile, designated 9M730 by the Russian military and given the NATO reporting name SSC-X-9 Skyfall. Burevestnik represents a fundamentally new category of strategic weapon — a cruise missile with effectively unlimited range powered by a nuclear reactor.
Key aspects of Burevestnik:
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Nuclear propulsion: Burevestnik's defining characteristic is its nuclear propulsion system. The missile uses a nuclear reactor to heat air for propulsion, eliminating the need for conventional fuel. This provides effectively unlimited range — the missile can fly for days or weeks, limited only by the reactor's operational life and mechanical reliability.
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Keldysh Research Center: The nuclear propulsion system was developed by the Keldysh Research Center (formerly the Scientific Research Institute for Thermal Processes), Russia's premier propulsion research institute. Keldysh has extensive experience in nuclear propulsion concepts, including space nuclear propulsion.
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Moscow Institute of Thermal Technology: Burevestnik was designed by the Moscow Institute of Thermal Technology, which also designed the Topol, Yars, Bulava, Avangard, and Oreshnik systems. MITT is Russia's premier strategic missile design bureau.
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Successful test (October 21, 2025): The decisive successful test achieved:
- Range: 14,000 km
- Flight duration: 15 hours
- Putin declared 'decisive tests complete'
- This test demonstrated the missile's ability to fly extended distances and durations
- Strategic implications:
- Unlimited range: The nuclear propulsion provides effectively unlimited range, allowing the missile to approach targets from any direction, including over the South Pole or through complex routing to avoid air defenses
- Unpredictable trajectories: Unlike ballistic missiles with predictable trajectories, Burevestnik can fly unpredictable paths, making it extremely difficult to detect and intercept
- Low-altitude flight: As a cruise missile, Burevestnik can fly at low altitudes, below the radar horizon of many early warning systems
- Nuclear warhead: Burevestnik is nuclear-capable, carrying a strategic warhead
- Psychological impact: The very concept of a nuclear-powered missile has significant psychological and deterrent value
- Safety and environmental concerns:
- A nuclear-powered atmospheric missile poses significant environmental risks
- A crash or failure could spread radioactive material over a wide area
- Previous test failures (including the 2019 Nyonoksa accident that killed 5 scientists) highlighted the dangers
- The international community has expressed concerns about the weapon's safety
- Connection to plasma physics:
- The nuclear propulsion system creates a plasma sheath around the missile during flight
- This plasma sheath could provide a degree of plasma stealth, similar to the Avangard HGV
- The plasma physics of nuclear-powered atmospheric flight is related to the broader Russian plasma weapons research continuum
- Keldysh Research Center's expertise in plasma physics and nuclear propulsion connects Burevestnik to the Russian plasma weapons research program
Burevestnik represents a unique and controversial weapons system. The nuclear-powered cruise missile concept was previously considered but abandoned by the United States (Project Pluto, 1957-1964) due to safety and environmental concerns. Russia's decision to develop and test Burevestnik demonstrates a willingness to pursue high-risk strategic weapons technologies that other nations have avoided. The October 2025 successful test and Putin's declaration of 'decisive tests complete' indicate that Burevestnik is approaching operational deployment.
04 Network_Linkage
Burevestnik connects to Moscow Institute of Thermal Technology (designer), Keldysh Research Center (nuclear propulsion), Putin's March 2018 announcement (one of six 'next-generation' weapons), Project Pluto (US historical predecessor), and the Russian plasma weapons research continuum through its plasma sheath flight characteristics.
05 Related_Entities (2)
05b Related_Topics (1)
06 Research_Findings (1)
World's first nuclear-powered atmospheric cruise missile, October 2025 test 14,000 km/15 hours, Keldysh nuclear propulsion, plasma sheath.
07 Key_Findings
- ▸ Putin declared 'decisive tests complete'
- ▸ This test demonstrated the missile's ability to fly extended distances and durations
- ▸ Unlimited range: The nuclear propulsion provides effectively unlimited range, allowing the missile to approach targets from any direction, including over the South Pole or through complex routing to avoid air defenses
- ▸ Unpredictable trajectories: Unlike ballistic missiles with predictable trajectories, Burevestnik can fly unpredictable paths, making it extremely difficult to detect and intercept
- ▸ Low-altitude flight: As a cruise missile, Burevestnik can fly at low altitudes, below the radar horizon of many early warning systems
09 Timeline_Mentions (2)
Putin Announces Six "Next-Generation" Weapons
Vladimir Putin publicly announces six new Russian weapons systems including Avangard HGV, Kinzhal ALBM, Zircon hypersonic cruise missile, Sarmat ICBM, Burevestnik nuclear-powered cruise missile, and P
MILITARYRussia tests Burevestnik nuclear-powered cruise missile (15-hour flight)
14,000 km range. Novaya Zemlya launch. Nuclear-powered unlimited endurance. Deployment imminent.
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Type: weapon
Region: Eurasia
Last updated: Research database snapshot