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3篇 您的检索式:作者名="D.B.Reisman"
    题名 作者 年代 出处 被引量
1Conceptual design of a 15-TW pulsed-power accelerator for high-energy-densityephysics experiments显示文摘We have developed a conceptual design of a 15-TW pulsed-power accelerator based on the linear-transformer-driver(LTD)architecture described by Stygar[W.A.Stygar et al.,Phys.Rev.ST Accel.Beams 18,110401(2015)].The driver will allow multiple,high-energy-density experiments per day in a university environment and,at the same time,will enable both fundamental and integrated experiments that are scalable to larger facilities.In this design,many individual energy storage units(bricks),each composed of two capacitors and one switch,directly drive the target load without additional pulse compression.Ten LTD modules in parallel drive the load.Each module consists of 16 LTD cavities connected in series,where each cavity is powered by 22 bricks connected in parallel.This design stores up to 2.75 MJ and delivers up to 15 TW in 100 ns to the constant-impedance,water-insulated radial transmission lines.The transmission lines in turn deliver a peak current as high as 12.5 MA to the physics load.To maximize its experimental value and flexibility,the accelerator is coupled to a modern,multibeam laser facility(four beams with up to 5 kJ in 10 ns and one beam with up to 2.6 kJ in 100 ps or less)that can provide auxiliary heating of the physics load.The lasers also enable advanced diagnostic techniques such as X-ray Thomson scattering and multiframe and three-dimensional radiography.The coupled accelerator-laser facility will be the first of its kind and be capable of conducting unprecedented high-energy-densityephysics experiments.R.B.Spielman D.H.Froula G.Brent E.M.Campbell D.B.Reisman M.E.Savage M.J.Shoup III W.A.Stygar M.L.Wisher 2017Matter and Radiation at Extremes2017,2,4:5
2Erratum:“On the design of magnetically insulated transmission lines for z-pinch loads”[Matter Radiat.Extremes 4,027402(2019)]显示文摘This erratum1 is issued by the authors to note that part(b)of Fig.1 was erroneously excluded in the published version of the manuscript.A correct version of Fig.1 is provided here.The figure caption of Fig.1 is repeated here,however the captions and text of the document remain unchanged.R.B.Spielman D.B.Reisman 2019Matter and Radiation at Extremes2019,4,4:3
3On the design of magnetically insulated transmission lines for z-pinch loads显示文摘Many papers have been published on the theory of magnetic insulation and the use of Zflow analysis of magnetically insulated transmission lines(MITLs).We describe herein a novel design process using the circuit code SCREAMER for a real-world MITL for z-pinch loads based on the Zflow model of magnetic insulation.In particular,we design a 15-TW,10-MA,100-ns double-disk transmission line using only circuit modeling tools and Z_(flow) analysis of the MITL.Critical issues such as current loss to the anode during the setup of magnetic insulation and the transition from a non-emitting vacuum power feed to an MITL play a large role in the MITL design.This very rapid design process allows us for the first time to explore innovative MITL designs such as variableimpedance MITLs that provide a significantly lower total inductance and improved energy delivery to the load.The tedious process of modeling the final MITL design with highly resolved 2D and 3D electromagnetic particle-in-cell codes occurs as a validation step,not as part of the design process.R.B.Spielman D.B.Reisman 2019Matter and Radiation at Extremes2019,4,2:0
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