Design descriptions of the Prometheus-L and -H inertial fusion energy drivers
- 1. TRW Inc., Bld. O1/1220, Redondo Beach, CA 90278 (United States)
- 2. McDonnell Douglas Aerospace Co. (MDAC), St. Louis, MO 63166 (United States)
Description
Two innovative drivers have been designed for a prototype 1000MW thermonuclear power plant planned for operation early in the next century. The Prometheus-L driver is a 4MJ KrF master oscillator power amplifier laser system designed to operate at a 5.6Hz repetition rate. Output pulses from the KrF master oscillator are synchronized with the pulsed-power excitation of the KrF power amplifiers and the launching of the inertial fusion energy (IFE) deuterium/tritium targets. The Prometheus-L laser architecture features 960 5kJ electric discharge KrF power amplifiers pumping 60 crossed stimulated rotational Raman scattering H2 amplifiers serving as beam accumulators. Pulse compression of the 60 accumulator beams is accomplished in 60 chirped, self-seeded SF6 stimulated Brillouin scattering pulse compressors. Grazing incidence metal focusing mirrors minimize back-streaming radiation damage from the target chamber. This architecture permits the laser driver to deliver spectrally broad-band, temporally complex optical pulses in 60 beam lines to implode the direct-drive IFE targets within a 5m radius target chamber.The Prometheus-H driver is a 7.8MJ 4GeV Pb++ heavy ion (HI) inertial fusion energy system designed to operate at a 3.5He repetition rate. The HI driver design is based on a short, ramped gradient, 5MeV accelerator, followed by a longer, 2km constant gradient, single beam linear accelerator operated in a 50kHz burst mode to generate sequentially 18 4GeV beamlets. A two-sided irradiation geometry was developed for indirect-drive HI targets. Six beamlets are used for the 45ns precursor HI pulses stored in two superconducting storage rings, 12 superconducting storage rings accumulate the 12 main beamlets, with a final buncher generating the 8ns HI pulses which arrive at the target chamber simultaneously. Final focusing is accomplished with large aperture triplet focusing magnets through Pb-vapor neutralization cells to reduce the effect of space charge, ballistically focusing onto two Pb stripping jets to create self-pinched Pb+82 beams which propagate along two preformed channels through two small openings in the HI target chamber blanket. ((orig.))
Additional details
Publishing Information
- Journal Title
- Fusion Engineering and Design
- Journal Volume
- 25
- Journal Issue
- 1-3
- Journal Page Range
- p. 111-124.
- ISSN
- 0920-3796
- CODEN
- FEDEEE
Conference
- Title
- International Atomic Energy Agency (IAEA) meeting on fusion reactor design and technology.
- Dates
- 13-17 Sep 1993.
- Place
- Los Angeles, CA (United States).
INIS
- Country of Publication
- Netherlands
- Country of Input or Organization
- Netherlands
- INIS RN
- 26018799
- Subject category
- S70: PLASMA PHYSICS AND FUSION TECHNOLOGY;
- Resource subtype / Literary indicator
- Conference
- Descriptors DEI
- DESIGN; FOCUSING; HYDROGEN; ICF DEVICES; INERTIAL CONFINEMENT; ION BEAM TARGETS; ION BEAMS; LASER TARGETS; LINEAR ACCELERATORS; PARTICLE BEAM FUSION ACCELERATOR; PULSES; STORAGE RINGS; TARGET CHAMBERS
- Descriptors DEC
- ACCELERATOR FACILITIES; ACCELERATORS; BEAMS; CONFINEMENT; ELEMENTS; NONMETALS; PLASMA CONFINEMENT; TARGETS; THERMONUCLEAR DEVICES