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lshongгæ (³õÈëÎÄ̳)
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physics of plasma Ͷ¸åÒâ¼û·ÖÎö
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ÎÒͶÁËһƪPhysics of plasma£¬Éó¸åÈËÒâ¼û»ØÀ´ËµµÄºÜÑÏÖØ£¬¸Ð¾õ¼¸ºõ¾ÍµÈÓÚÊǾܸ壬±à¼²¿½¨ÒéתͶ£¬µ«ËµÒ²¿ÉÒÔÐ޸ĺóÔÙ¿´¡£ÎÒÏëÎÊÎÊ´ó¼ÒͶ¹ýÕâ¸öÆÚ¿¯µÄ£¬·µ»ØÀ´µÄÉó¸åÒâ¼ûÊÇÔõôÑùµÄ£¿ÊDz»ÊÇ˵µÄ¶¼ÊÇÕâôÑÏÖØ£¿ Editorial Office Comments: We have received the referee's report on your paper. The referee's comments indicate that the paper is not appropriate for publication. You may consider revising your manuscript for submission to another journal or to AIP Advances, as described below. Alternatively, you may choose to revise your manuscript to address the referee's concerns. If you do, you must submit a detailed response to the referee along with the revised manuscript. The revised manuscript is due by 25-Apr-2016 via the PXP web site. The Editors will then make the decision on the next step in the review process. Reviewer Comments: The paper presents nice photos of the evolution of ejected plasmas. However, there are major issues. The velocity is ~10^3 m/s, so it is a hydrodynamic development that has nothing to do with spark gap switching or trigger. I do not understand why in fig. 2 the triggering pulse is shown and how the pulse energy is adapted (maybe it helps to give the values of C and R). Fig. 3 is the worst of all. It shows an oscilatory voltage and current that are 90 degrees out of phase. So, for both reasons the dissipated energy beyond 2 microseconds is zero! In the first 2 microseconds the dissipation is roughly 1kV*10A*2us=20 mJ! Orders of magnitude below what the authors give. So I have no clue of what is going on in the pulse circuit. This makes it impossible to properly judge the results. The authors do not even try to give conclusions, they only present a summary. This material should be presented at conferences where it should be thoroughly discussed in order to get good physics in the description. A total rewrite is necessary to get this work to the level of a paper. |
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