Citation: | R MILLS, J LOTOSKI, Y LU. Mechanism of soft x-ray continuum radiation from low-energy pinch discharges of hydrogen and ultra-low field ignition of solid fuels[J]. Plasma Science and Technology, 2017, 19(9): 95001-095001. DOI: 10.1088/2058-6272/aa7383 |
[1] |
Mills R L 2016 The Grand Uni?ed Theory of Classical Physics (Lancaster, PA : Cenveo)(http://brilliantlightpower.com/ book-download-and-streaming/)
|
[2] |
Mills R L and Lu Y 2010 Int. J. Hydrog. Energy 35 8446
|
[3] |
Mills R L, Lu Y and Akhtar K 2010 Cent. Eur. J. Phys. 8 318
|
[4] |
Mills R L and Lu Y 2011 Eur. Phys. J. D 64 65
|
[5] |
Mills R L, Booker R and Lu Y 2013 J. Plasma Phys. 79 489
|
[6] |
Bykanov A 2012 Validation of the observation of soft x-ray continuum radiation from low-energy pinch discharges in the presence of molecular hydrogen PhD Thesis Harvard Smithsonian Center for Astrophysics Cambridge, MA
|
[7] |
Mills R and Lotoski J 2015 Int. J. Hydrog. Energy 40 25
|
[8] |
Akhtar K, Scharer J E and Mills R L 2009 J. Phys. D: Appl. Phys. 42 135207
|
[9] |
Mills R L and Akhtar K 2009 Int. J. Hydrog. Energy 34 6465
|
[10] |
Mills R L, Dhandapani B and Akhtar K 2008 Int. J. Hydrog. Energy 33 802
|
[11] |
Mills R, Ray P and Dhandapani B 2006 J. Plasma Phys. 72 469
|
[12] |
Phillips J et al 2007 Int. J. Hydrog. Energy 32 3010
|
[13] |
Mills R L et al 2005 J. Plasma Phys. 71 877
|
[14] |
Mills R L and Akhtar K 2010 Int. J. Hydrog. Energy 35 2546
|
[15] |
Kuraica M and Konjevi? N 1992 Phys. Rev. A 46 4429
|
[16] |
Kuraica M et al 1992 Spectrochim. Acta B 47 1173
|
[17] |
Videnovi? I R, Konjevi? N and Kuraica M M 1996 Spectrochim. Acta B 51 1707
|
[18] |
Alexiou S and Leboucher-Dalimier E 1999 Phys. Rev. E 60 3436
|
[19] |
Djurovi? S and Roberts J R 1993 J. Appl. Phys. 74 6558
|
[20] |
Radovanov S B et al 1995 Appl. Phys. Lett. 66 2637
|
[21] |
Radovanov S B et al 1995 J. Appl. Phys. 78 746
|
[22] |
Baravian G et al 1987 J. Appl. Phys. 61 5249
|
[23] |
Phelps A V 1992 J. Phys. Chem. Ref. Data 21 883
|
[24] |
Barbeau C and Jolly J 1990 J. Phys. D: Appl. Phys. 23 1168
|
[25] |
Bzenic S A et al 1991 Chem. Phys. Lett. 184 108
|
[26] |
Ayers E L and Benesch W 1988 Phys. Rev. A 37 194
|
[27] |
Benesch W and Li E 1984 Opt. Lett. 9 338
|
[28] |
Mills R 2015 Power generation systems and methods regarding same New Jersey Blacklight Power, Inc. WO/2015/ 075566
|
[29] |
Van Gessel A F H 2009 EUV spectroscopy of hydrogen plasmas MSc Thesis Eindhoven University of Technology, Eindhoven, Netherlands pp 61–70
|
[30] |
Mills R L et al 2014 Int. J. Energy Res. 38 1741
|
[31] |
Mills R et al 2014 Int. J. Hydrog. Energy 39 11930
|
[32] |
Mills R et al 2014 Int. J. Hydrog. Energy 39 14512
|
[33] |
Awe T J et al 2010 Phys. Plasmas 17 102507
|
[34] |
Clementson J 2012 Interpretation of EBIT Data-the Case of Tungsten DE-AC52-07NA27344 USA, Lawrence Livermore National Laboratory slide 7
|
[35] |
Tr?bert E 2002 Can. J. Phys. 80 1481
|
[36] |
Phelps A V and Clemetson J 2012 Eur. Phys. J. D 66 120
|
[37] |
Ngo H D Pressure measurement in combustion engines http:// mat.ee.tu-berlin.de/research/sic_sens/sic_sen3.htm
|
[38] |
Simpson R 1999 Unraveling the mystery of detonation https:// llnl.gov/str/Simpson99.html
|
[39] |
Meyer R, K?hler J and Homburg A 2007 Explosives 6th edn (Weinheim: Wiley)p 119
|
[40] |
van der Horst R M et al 2012 J. Phys. D: Appl. Phys. 45 345201
|
[41] |
Gigosos M A, González M á and Carde?oso V 2003 Spectrochim. Acta B 58 1489
|
[42] |
Fridman A and Kennedy L A 2011 Plasma Physics and Engineering 2nd edn (Boca Raton, FL, New York: CRC Press, Taylor and Francis)
|
[43] |
Beiser A 1978 Concepts of Modern Physics 4th edn (New York: McGraw-Hill)pp 329–40
|
[44] |
Masnavi M et al 2005 Appl. Phys. Lett. 87 111502
|
[45] |
Pan J Q et al 2005 Electrochem. Commun. 7 857
|
[46] |
Lide D R 2007 CRC Handbook of Chemistry and Physics 88th ed (Boca Raton, FL, London: CRC Press, Taylor and Francis)
|
[47] |
Dean J A 1999 Lange’s Handbook of Chemistry 15th edn (New York: McGraw-Hill)
|
[48] |
Knacke O, Kubaschewski O and Hesselmann K 1991 Thermochemical Properties of Inorganic Substances 2nd edn (Berlin: Springer)
|
[49] |
Kinney G F and Graham K J 1985 Explosive Shocks in Air 2nd edn (Berlin: Springer)
|
[50] |
Barstow M A and Holberg J B 2003 Extreme Ultraviolet Astronomy (Cambridge: Cambridge University Press)ch 1
|
[51] |
Barstow M A and Holberg J B 2003 Extreme Ultraviolet Astronomy (Cambridge: Cambridge University Press)ch 8
|
[52] |
Mills R L 2001 Int. J. Hydrog. Energy 26 1041
|
[53] |
Stix M 1991 The Sun (Berlin: Springer)p 321
|
[54] |
Phillips K J H 1992 Guide to the Sun (Cambridge: Cambridge University Press)pp 126–7
|
[55] |
Stix M 1991 The Sun (Berlin: Springer)pp 351–6
|
[56] |
Nobel Prize
|
[57] |
Craig N et al 1997 Astrophys. J. Suppl. Ser. 113 131
|
[58] |
Reeves E M, Huber E C M and Timothy G J 1977 Appl. Opt. 16 837
|
[59] |
Labov S E and Bowyer S 1991 Astrophys. J. 371 810
|
[60] |
Bower C S, Field G B and Mack J E 1968 Nature 217 32
|
[1] | B I MIN, D K DINH, D H LEE, T H KIM, S CHOI. Numerical modelling of a low power non-transferred arc plasma reactor for methane conversion[J]. Plasma Science and Technology, 2019, 21(6): 64005-064005. DOI: 10.1088/2058-6272/ab00ce |
[2] | Peng LIU (刘朋), Xuesong LIU (刘雪松), Jun SHEN (沈俊), Yongxiang YIN (印永祥), Tao YANG (杨涛), Qiang HUANG (黄强), Daniel AUERBACH, Aart W KLEIYN. CO2 conversion by thermal plasma with carbon as reducing agent: high CO yield and energy efficiency[J]. Plasma Science and Technology, 2019, 21(1): 12001-012001. DOI: 10.1088/2058-6272/aadf30 |
[3] | Xu CAO (曹栩), Weixuan ZHAO (赵玮璇), Renxi ZHANG (张仁熙), Huiqi HOU (侯惠奇), Shanping CHEN (陈善平), Ruina ZHANG (张瑞娜). Conversion of NO with a catalytic packed-bed dielectric barrier discharge reactor[J]. Plasma Science and Technology, 2017, 19(11): 115504. DOI: 10.1088/2058-6272/aa7ced |
[4] | N KHADIR, K KHODJA, A BELASRI. Methane conversion using a dielectric barrier discharge reactor at atmospheric pressure for hydrogen production[J]. Plasma Science and Technology, 2017, 19(9): 95502-095502. DOI: 10.1088/2058-6272/aa6d6d |
[5] | Kalsoom AZRA, Muddasir ALI, Azhar HUSSAIN. Study of the O-mode in a relativistic degenerate electron plasma[J]. Plasma Science and Technology, 2017, 19(3): 35001-035001. DOI: 10.1088/2058-6272/19/3/035001 |
[6] | QU Hao (屈浩), ZHANG Tao (张涛), ZHANG Shoubiao (张寿彪), WEN Fei (文斐), WANG Yumin (王嵎民), KONG Defeng (孔德峰), HAN Xiang (韩翔), YANG Yao (杨曜), GAO Yu (高宇), HUANG Canbin (黄灿斌), CAI Jianqing (蔡剑青), GAO Xiang (高翔), the EAST team. Q-Band X-Mode Reflectometry and Density Profile Reconstruction[J]. Plasma Science and Technology, 2015, 17(12): 985-990. DOI: 10.1088/1009-0630/17/12/01 |
[7] | PANG Xuexia(庞学霞), DENG Zechao(邓泽超), JIA Pengying(贾鹏英), LIANG Weihua(梁伟华). Influence of Ionization Degrees on Conversion of CO and CO 2 in Atmospheric Plasma near the Ground[J]. Plasma Science and Technology, 2014, 16(8): 782-788. DOI: 10.1088/1009-0630/16/8/09 |
[8] | ZHANG Chongyang (张重阳), LIU Ahdi (刘阿娣), LI Hong (李弘), LI Bin (李斌), et al.. X-Mode Frequency Modulated Density Profile Reflectometer on EAST Tokamak[J]. Plasma Science and Technology, 2013, 15(9): 857-862. DOI: 10.1088/1009-0630/15/9/04 |
[9] | HU Shuanghui (胡爽慧), WANG Baowei (王保伟), LV Yijun (吕一军), YAN Wenjuan (闫文娟). Conversion of Methane to C2 Hydrocarbons and Hydrogen Using a Gliding Arc Reactor[J]. Plasma Science and Technology, 2013, 15(6): 555-561. DOI: 10.1088/1009-0630/15/6/13 |
[10] | Y. YOSHIMURA, S. KUBO, T. SHIMOZUMA, H. IGAMI, H. TAKAHASHI, M. NISHIURA, S. OGASAWARA, R. MAKINO, T. MUTOH, H. YAMADA, A. KOMORI. High Density Plasma Heating by EC-Waves Injected from the High-Field Side for Mode Conversion to Electron Bernstein Waves in LHD[J]. Plasma Science and Technology, 2013, 15(2): 93-96. DOI: 10.1088/1009-0630/15/2/02 |