ETE
ENTITY dossier

ETE

ETE

ENTITY Tokamak INTERNATIONAL

01 Executive_Summary

ETE tokamak facility at University of São Paulo, Brazil's small tokamak for plasma physics research.

03 Deep_Dive_Intelligence

Intelligence Summary: ETE — Experimento Tokamak Esférico

Node Identity: The ETE (Experimento Tokamak Esférico) is a small spherical tokamak (low aspect ratio) entirely designed and constructed at INPE during the 1990s, achieving first plasma discharge in November 2000. ETE has a major radius of ~30 cm and minor radius of ~20 cm, with an Inconel 625 vacuum vessel providing 58 Conflat ports for diagnostics. Initial operating parameters achieved plasma currents of ~45 kA lasting ~4 ms, with electron temperatures up to 160 eV and densities of 2.2×10¹⁹ m⁻³. The design target for the first operational phase was plasma currents up to 200 kA lasting ~15 ms. ETE continues operating as of 2024.

Strategic Relevance: ETE is a modest but genuinely indigenous Brazilian fusion device — designed and built domestically rather than imported. While its parameters are far below reactor-relevant conditions, it provides hands-on tokamak operation experience, diagnostic development, and training that few countries in the developing world possess. The spherical tokamak configuration is strategically significant because it is the same concept being pursued by private fusion companies (Tokamak Energy, Commonwealth Fusion Systems) for compact fusion power plants. Brazil's early entry into spherical tokamak research (1990s) predates much of the current private fusion boom. The device's research objectives include exploring low aspect ratio tokamak plasma physics, plasma edge investigation, plasma heating by Alfvén waves, developing hot plasma diagnostics, and training in tokamak operation.

Technical Focus / Capabilities: ETE's technical parameters position it as an educational and exploratory device. Key researchers include Gerson Otto Ludwig (D.Sc., ITA), L.A. Berni, E. Del Bosco, J.G. Ferreira, R.M. Oliveira, and C.S. Shibata. The device was designed to allow even a modest machine to contribute effectively to the international fusion research effort, given the large number of unsolved physics problems in the spherical torus configuration. Under the CNEN-INPE Protocol of Intentions (signed October 10, 2022, extended to October 2026), ETE facilities host the provisional Laboratório de Fusão Nuclear (LFN), with a permanent LFN facility planned for Iperó, SP — described as "unique in Latin America."

Network Linkage: ETE is managed by CNEN as part of the National Fusion Program transition from INPE. The device is physically located at INPE facilities but under CNEN operational oversight through the LFN protocol. The planned permanent LFN at Iperó connects to Brazil's historical nuclear program site. IAEA Safeguards monitoring of CNEN provides international oversight of the fusion program's dual-use aspects.

04 Network_Linkage

ETE is managed by CNEN as part of the National Fusion Program transition from INPE. The device is physically located at INPE facilities but under CNEN operational oversight through the LFN protocol (Protocol of Intentions signed October 2022, extended to October 2026). The planned permanent LFN at Iperó connects to Brazil's historical nuclear program infrastructure. IAEA Safeguards monitoring of CNEN provides international oversight.

05b Related_Topics (2)

07 Key_Findings

  • Technical Focus / Capabilities:

09 Timeline_Mentions (10)

1961

Betty and Barney Hill abduction (Sept 19-20, 1961): first widely publicized alien abduction, Zeta Reticuli star map, Dr. Simon hypnosis

First US abduction case. Civil rights activists, mixed-race couple. Missing time + medical exam. Dr. Benjamin Simon hypnosis (11 hours). Zeta Reticuli star map (Marjorie Fish match). 'The Interrupted

uap-research
1967

Malmstrom AFB ICBM shutdown (March 16, 1967): 10 missiles off-line, 'red pulsating oval 30 feet' over gate, Salas witness, 'signal sent to missiles'

10 ICBMs simultaneous shutdown. Lt. Salas DMCCC. 'Red pulsating oval, 30 feet.' Guard screaming, weapons drawn. 'Signal sent to missiles.' 'National security incident.' No explanation. 2025 Pentagon c

uap-research
1972

Astron experiment funding cancelled at LLNL

16-year project ends without achieving field reversal. Compact torus concept disperses to spheromak and FRC research.

historical-context
1974

Soviet 'cold explosion' tests begin (detected by US satellites)

78+ anomalous mushroom clouds over Soviet Arctic and Pacific. April 1984 Japan incident. Not nuclear, not seismic.

defense-programs
1975

Travis Walton abduction (Nov 5, 1975): seven-man crew witnesses, five passed polygraphs, five-day disappearance, 'Fire in the Sky'

Seven-man logging crew. All saw craft. Walton struck by beam. Missing 5 days. Massive search (Sheriff/Forest Service/USAF). Five of six passed polygraphs. 'Small beings with large eyes' (Grays). 'Fire

uap-research
1976

Yakov Krasik Completes M.Sc. at Tomsk

Yakov Krasik receives his M.Sc. in physics from Tomsk Polytechnic Institute, focusing on high-current electron beam propagation.

personnel
1980

Rendlesham Forest (Dec 26-28, 1980): UK's Roswell — USAF nuclear base, Lt. Col. Halt witness, triangular craft, radar confirmation

UK's Roswell. USAF Bentwaters/Woodbridge (nuclear). Lt. Col. Halt (deputy commander). Triangular craft, 2-3m. Ground traces. Radar: thousands of mph. Multi-night. Penniston touched craft. Pope investi

uap-research
1980

Krasik Earns Ph.D. at JINR Dubna

Yakov Krasik completes his Ph.D. at the Joint Institute for Nuclear Research, specializing in high-power ion beam generation.

personnel
1981

FRX-C experiment begins operation at LANL

FRX-C demonstrates R² confinement scaling — foundational FRC physics. Beta highest of any fusion confinement.

fusion-research
1985

Christopher Mellon (1985-2026): DASD-I under Clinton/Bush, SSCI Staff Director, gave Pentagon videos to NYT, Disclosure Foundation Chair

20-year IC career. DASD-I Clinton/Bush. SSCI Staff Director. SAP oversight. Gave Pentagon videos to NYT. USSOCOM legislation. Disclosure Foundation chair. Japan UAP caucus address. AARO obstruction ev

uap-research
View Full Timeline → View on Network Graph →

10 FAQ

What is ETE?
Identity: The ETE (Experimento Tokamak Esférico) is a small spherical tokamak (low aspect ratio) entirely designed and constructed at INPE during the 1990s, achieving first plasma discharge in November 2000. ETE has a major radius of ~30 cm and minor radius of ~20 cm, with an Inconel 625 vacuum vessel providing 58 Conflat ports for diagnostics. Initial operating parameters achieved plasma...
What role does ETE play in the research network?
ETE is classified under the "Tokamak" category, belonging to the INTERNATIONAL vertical group. ETE is managed by **CNEN** as part of the National Fusion Program transition from **INPE**. The device is physically located at INPE facilities but under CNEN operational oversight through the LFN...
What evidence supports the ETE assessment?
The intelligence assessment for ETE is supported by 4 primary sources, 1 PDF document, and 1 citation. Key sources include "ETE (tokamak) — Wikipedia", "Overview and Initial Results of the ETE Spherical Tokamak — IAEA", and "Spherical Tokamak Development in Brazil — Brazilian Journal of Physics". These documents provide the evidentiary basis for the analysis.
What is known about ETE?
Identity: The ETE (Experimento Tokamak Esférico) is a small spherical tokamak (low aspect ratio) entirely designed and constructed at INPE during the 1990s, achieving first plasma discharge in November 2000. ETE has a major radius of ~30 cm and minor radius of ~20 cm, with an Inconel 625 vacuum vessel providing 58 Conflat ports for diagnostics....
What is ETE's role in the network?
ETE is managed by CNEN as part of the National Fusion Program transition from INPE. The device is physically located at INPE facilities but under CNEN operational oversight through the LFN protocol (Protocol of Intentions signed October 2022, extended to October 2026). The planned permanent LFN at Iperó connects to Brazil's historical nuclear...
What primary source PDFs are available for ETE?
1 PDF document is available: "Overview and Initial Results of the ETE Spherical Tokamak". This paper presents an overview of the design, construction, diagnostics, control systems, and initial experimental operation of the Experimento Tokamak Esférico (ETE) spherical tokamak located at...
How does ETE fit into the broader intelligence network?
ETE is managed by CNEN as part of the National Fusion Program transition from INPE. The device is physically located at INPE facilities but under CNEN operational oversight through the LFN protocol (Protocol of Intentions signed October 2022, extended to October 2026). The planned permanent LFN at Iperó connects to Brazil's historical nuclear program infrastructure. IAEA Safeguards monitoring...
What external sources document ETE?
ETE is documented by 4 external sources, including 1 Encyclopedia article, 1 Conference paper (IAEA), and 1 Journal article. Notable references include "ETE (tokamak) — Wikipedia", "Overview and Initial Results of the ETE Spherical Tokamak — IAEA", and "Spherical Tokamak Development in Brazil — Brazilian Journal of Physics".
What is the historical timeline for ETE?
ETE is referenced across documents spanning 2000–2026, with activity noted in 2000, 2022, and 2024. This temporal range is derived from the primary source documents in the research archive.
What documents should I read to learn more about ETE?
To learn more about ETE, review the 4 primary sources, 1 PDF document, and related research finding linked in the source documents section of this dossier.

Citations 1

  1. [1] (2002) — Instituto Nacional de Pesquisas Espaciais (INPE), Laboratório Associado de Plasma (LAP)
ID: ETE
Type: entity
Region: brazil
Last updated: Research database snapshot