Published May 2004 | Version v1
Journal article

Prospects for high-gain, high yield National Ignition Facility targets driven by 2ω (green) light

  • 1. Atomic Weapons Establishment, Aldermaston (United Kingdom)
  • 2. Lawrence Livermore National Laboratory, University of California, Livermore, California 94551 (United States)

Description

The National Ignition Facility (NIF) [J. A. Paisner, E. M. Campbell, and W. J. Hogan, Fusion Technol. 26, 755 (1994)], operating at green (2ω) light, has the potential to drive ignition targets with significantly more energy than the 1.8 MJ it will produce with its baseline, blue (3ω) operations. This results in a greatly increased 'target design space', providing a number of exciting opportunities for fusion research. These include the prospect of ignition experiments with capsules absorbing energies in the vicinity of 1 MJ. This significant increase in capsule absorbed energy over the original designs at ∼150 kJ could allow high-gain, high yield experiments on NIF. This paper reports the progress made exploring 2ω for NIF ignition, including potential 2ω laser performance, 2ω ignition target designs, and 2ω laser plasma interaction studies

Additional details

Identifiers

Publishing Information

Journal Title
Physics of Plasmas
Journal Volume
11
Journal Issue
5
Journal Page Range
p. 2738-2745
ISSN
1070-664X
CODEN
PHPAEN

Conference

Title
45. annual meeting of the APS Division of Plasma Physics
Dates
27-31 Oct 2003
Place
Albuquerque, NM (United States)

INIS

Country of Publication
United States
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
36002285
Subject category
S70: PLASMA PHYSICS AND FUSION TECHNOLOGY; S36: MATERIALS SCIENCE;
Resource subtype / Literary indicator
Conference
Descriptors DEI
IGNITION; PLASMA SIMULATION; TARGETS; THERMONUCLEAR IGNITION; THERMONUCLEAR REACTIONS; THERMONUCLEAR REACTORS; US NATIONAL IGNITION FACILITY
Descriptors DEC
NUCLEAR REACTIONS; NUCLEOSYNTHESIS; SIMULATION; SYNTHESIS

Optional Information

Notes
(c) 2004 American Institute of Physics.