Fluorescence-pumped photolytic gas laser system for a commercial laser fusion power plant
Description
The first results are given for the conceptual design of a short-wavelength gas laser system suitable for use as a driver (high average power ignition source) for a commercial laser fusion power plant. A comparison of projected overall system efficiencies of photolytically excited oxygen, sulfur, selenium and iodine lasers is described, using a unique windowless laser cavity geometry which will allow scaling of single amplifier modules to 125 kJ per aperture for 1 ns pulses. On the basis of highest projected overall efficiency, a selenium laser is chosen for a conceptual power plant fusion laser system. This laser operates on the 489 nm transauroral transition of selenium, excited by photolytic dissociation of COSe by ultraviolet fluorescence radiation. Power balances and relative costs for optics, electrical power conditioning and flow conditioning of both the laser and fluorescer gas streams are discussed for a system with the following characteristics: 8 operating modules, 2 standby modules, 125 kJ per module, 1.4 pulses per second, 1.4 MW total average power. The technical issues of scaling visible and near-infrared photolytic gas laser systems to this size are discussed
Availability note (English)
MF available from INIS under the Report Number; Available from NTIS., PC A03/MF A01.Files
9377490.pdf
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Additional details
Publishing Information
- Imprint Pagination
- 47 p.
- Report number
- UCRL--79655
Conference
- Title
- 20. annual AICHE meeting.
- Dates
- 13 - 17 Nov 1977.
- Place
- New York, NY, USA.
INIS
- Country of Publication
- United States
- Country of Input or Organization
- United States
- INIS RN
- 9377490
- Subject category
- S70: PLASMA PHYSICS AND FUSION TECHNOLOGY;
- Resource subtype / Literary indicator
- Conference
- Descriptors DEI
- COST; ENERGY BALANCE; FLUORESCENCE; GAS LASERS; OPTICAL SYSTEMS; PHOTOLYSIS; SPECIFICATIONS; THERMONUCLEAR REACTORS; ULTRAVIOLET RADIATION
- Descriptors DEC
- AMPLIFIERS; CHEMICAL REACTIONS; DECOMPOSITION; ELECTROMAGNETIC RADIATION; LASERS; LUMINESCENCE; RADIATIONS
Optional Information
- Secondary number(s)
- CONF-771102--16.