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Axial Magnetic Field Effects on Xenon Short-Arc Lamps

Axial Magnetic Field Effects on Xenon Short-Arc Lamps
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摘要 The effect of an axial magnetic field (AMF) on an old xenon short-arc lamp is experimentally investigated in this work. As the AMF increases up to 18 roT, the visible radiation power and electric power ascend more than 80% and 70% respectively, and the radiation efficiency is improved by 23% for the best increment at 12 mT AMF. The measurement of radiation intensity shows that the increment of radiation intensity comes mostly from the plasma area close to the cathode tip, and partially from the other area of the arc column. Successive images of the arc indicate that the arc column not only rotates about its axis, but revolves around the axis of electrodes with the AMF. The arc column structure is constricted, distorted and elongated as the AMF increases. It is suggested that the improvements of the radiation intensity and radiation efficiency are attributed to the constriction of the arc column, which is mainly induced by the enhanced cathode jet. The effect of an axial magnetic field (AMF) on an old xenon short-arc lamp is experimentally investigated in this work. As the AMF increases up to 18 roT, the visible radiation power and electric power ascend more than 80% and 70% respectively, and the radiation efficiency is improved by 23% for the best increment at 12 mT AMF. The measurement of radiation intensity shows that the increment of radiation intensity comes mostly from the plasma area close to the cathode tip, and partially from the other area of the arc column. Successive images of the arc indicate that the arc column not only rotates about its axis, but revolves around the axis of electrodes with the AMF. The arc column structure is constricted, distorted and elongated as the AMF increases. It is suggested that the improvements of the radiation intensity and radiation efficiency are attributed to the constriction of the arc column, which is mainly induced by the enhanced cathode jet.
出处 《Plasma Science and Technology》 SCIE EI CAS CSCD 2014年第12期1096-1099,共4页 等离子体科学和技术(英文版)
基金 supported by National Natural Science Foundation of China (Nos.50876101,11035005) the Science Instrument Foundation of CAS
关键词 xenon lamp axial magnetic field (AMF) radiation intensity cathode jet xenon lamp, axial magnetic field (AMF), radiation intensity, cathode jet
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  • 1Rehmet M. 1980, IEE Proceedings A, 127:190.
  • 2Hirsch D, yon Zedtwitz P, Osinga T, et al. 2003, Jour- nal of Solar Energy Engineering, 125:117.
  • 3Yeralan S, Doughty D, Blondia R, et al. 2005, SPIE Proceedings, 5450:27.
  • 4Weichmann U, Cromwijk J W, Heusler G, et M. 2005, SPIE Proceedings, 5740:13.
  • 5Guesdon C, Alxneit I, Tschudi H R, et al. 2006, Solar Energy, 80:1344.
  • 6Alxneit I and Schmit H. 2012, Journal of Solar Energy Engineering-Transactions of the Asme, 134:011013.
  • 7Youshi T. 2005, Motion Picture ,z Video Technology, 11:43.
  • 8Woodlee R L, Fuh M R S, et al. 1989, Review of Sci- entific Instruments, 60:3640.
  • 9Gold RS. 1996, Arc lamp with external magnetic means. US5589726-A,USA.
  • 10Manning L W. 2000, High pressure arc discharge lamp has magnetic field source for suppressing plasma jet instability. AU200044952-A, USA.

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