Design And Primary Results Of X-Ray Heating Aluminum Foil Experiments At Pts Facility

2015 42ND IEEE INTERNATIONAL CONFERENCE ON PLASMA SCIENCES (ICOPS)(2015)

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摘要
The strong X-ray radiations produced by mega-ampere-current-level fast Z-pinch plasmas offer valuable and indispensible opportunities to create hot and dense radiation-heated plasmas 1 , serving the laboratory investigations of radiation sciences in the fields of opacity measurements, photon-ionized plasmas and so on. Recently, experiments of x-ray heating aluminum foil has been designed and is being carried out at the Primary Test Stand (PTS) facility 2 , a 8–10 MA, 70 ns pulsed power driver being able to generate x-ray bursts of 80 TW peak power and 3–5 ns FWHM 3 . In this paper, we present the simulation results of the aluminum foils heated by x-rays using a 1D radiation hydrodynamic code, the design of the sample foils with CH coatings on each side and the diagnostic results of x-ray power and energy in different spectral regions, transmission spectra through the foils and so on. By analyzing the measurements, the states and properties of the radiation-heated aluminum plasmas are estimated and discussed.
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X-ray heating aluminum foil experiments,PTS facility,X-ray radiation,mega-ampere-current-level fast Z-pinch plasmas,hot radiation-heated plasmas,dense radiation-heated plasmas,radiation sciences,opacity measurements,photon-ionized plasmas,Primary Test Stand facility,pulsed power driver,X-ray bursts,FWHM,1D radiation hydrodynamic code,CH coatings,X-ray power,spectral regions,transmission spectra,radiation-heated aluminum plasmas,current 8 MA to 10 MA,time 70 ns,time 3 ns to 5 ns,power 80 TW
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