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Numerical Experiment of Combined Infrared and Ultraviolet Radiation Remote Sensing to Determine the Profile and Total Content of Atmospheric Ozone 被引量:1
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作者 程明虎 石广玉 周秀骥 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 1990年第3期305-319,共15页
A new remote sensing method is described to determine the vertical distribution and total content of atmospheric ozone. The method combines surface infrared, satellite infrared and ultraviolet channels. The width of t... A new remote sensing method is described to determine the vertical distribution and total content of atmospheric ozone. The method combines surface infrared, satellite infrared and ultraviolet channels. The width of the infrared channels is 0.01 cm-1, less than Lorentz half-width at the earth's surface, rather than the present width, because these channels can obtain information about variations in the ozone profile below the profile main-peak. The numerical experiments show that the method has a satisfactory precision in determining total ozone content, just about I percent error, and vertical distribution from the earth to 65 km space. In addition, some semi-analysis functions lor calculating backscattered ultraviolet and a relaxation equation are described in this paper. 展开更多
关键词 FIGURE SHOW Numerical Experiment of Combined Infrared and Ultraviolet Radiation Remote Sensing to Determine the Profile and Total Content of Atmospheric Ozone
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A single center experience of combined liver and kidney transplantation
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作者 朱志军 《外科研究与新技术》 2011年第4期273-274,共2页
Objective To summarize the experience of treating the end stage of liver disease complicated with renal failure using combined liver - kidney transplantation. Methods The clinical data of 28 cases receiving combined l... Objective To summarize the experience of treating the end stage of liver disease complicated with renal failure using combined liver - kidney transplantation. Methods The clinical data of 28 cases receiving combined liver - kidney transplantation were retrospectively ana- 展开更多
关键词 A single center experience of combined liver and kidney transplantation
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High-energy laser facility PHELIX at GSI:latest advances and extended capabilities
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作者 Zs.Major U.Eisenbarth +18 位作者 B.Zielbauer C.Brabetz J.B.Ohland Y.Zobus S.Roeder D.Reemts S.Kunzer S.Götte D.Neidherr J.Hornung P.Kewes D.Schumacher D.Beck P.Hesselbach M.Malki P.Neumayer K.Weyrich A.Tauschwitz V.Bagnoud 《High Power Laser Science and Engineering》 SCIE CAS 2024年第4期9-23,共15页
The high-energy/high-intensity laser facility PHELIX of the GSI Helmholtzzentrum für Schwerionenforschung in Darmstadt,Germany,has been in operation since 2008.Here,we review the current system performance,which ... The high-energy/high-intensity laser facility PHELIX of the GSI Helmholtzzentrum für Schwerionenforschung in Darmstadt,Germany,has been in operation since 2008.Here,we review the current system performance,which is the result of continuous development and further improvement.Through its versatile frontend architecture,PHELIX can be operated in both long-and short-pulse modes,corresponding to ns-pulses with up to 1 kJ pulse energy and sub-ps,200 J pulses,respectively.In the short-pulse mode,the excellent temporal contrast and the control over the wavefront make PHELIX an ideal driver for secondary sources of high-energy ions,neutrons,electrons and X-rays.The long-pulse mode is mainly used for plasma heating,which can then be probed by the heavy-ion beam of the linear accelerator of GSI.In addition,PHELIX can now be used to generate X-rays for studying exotic states of matter created by heavy-ion heating using the ion beam of the heavy-ion synchrotron of GSI. 展开更多
关键词 beam quality combined high-energy-laser heavy-ion experiments high-energy lasers high-intensity lasers temporal contrast
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