The Promise of Magnetized Fuel: High Gain in Inertial Confinement Fusion
نویسندگان
چکیده
منابع مشابه
on the investigation of spark formation conditions and energy gain in inertial confinement fusion
in isobaric models for inertial confinement fusion it is assumed that the target configurationat stagnation time (maximum compression) consists of two regions, hot spark and cold fuel, respectively.here the conditions of spark formation and ignition in hydrogen equimolar isotopes in central sparkignition are investigated and permissible values of hs and ts are evaluated numerically. by introduc...
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Contact: Wolf Seka (585) 275-3815; fax: (585) 275-5960; e-mail: [email protected] http://www.lle.rochester.edu John M. Soures (585) 275-3866; fax: (585) 256-2586; e-mail: [email protected] Fractionation of Fusion Fuel in ICF Capsules: Inertial confinement fusion (ICF) ignition target designs typically assume a homogenous layer of an equimolar mixture of deuterium and tritium fuel kept...
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Indirect-drive hohlraum experiments at the National Ignition Facility have demonstrated symmetric capsule implosions at unprecedented laser drive energies of 0.7 megajoule. One hundred and ninety-two simultaneously fired laser beams heat ignition-emulate hohlraums to radiation temperatures of 3.3 million kelvin, compressing 1.8-millimeter-diameter capsules by the soft x-rays produced by the hoh...
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In recent years, many different plans have been considered to use the nuclear energy gained from inertial confinement fusion (ICF) as attempts to obtain high energy efficiencies. In conventional ICF methods, a small amount (about mg) of the deuterium–tritium compound is confined in a small spherical chamber of a few millimeters in radius and compressed by laser or heavy ion beams with powers in...
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ژورنال
عنوان ژورنال: Fusion Technology
سال: 1991
ISSN: 0748-1896
DOI: 10.13182/fst91-a11946944