The Inductively Coupled Radio Frequency Plasma, by Maher I. Boulos, Plasma Technology Research Center (CRTP), Dept. of Chemical Engineering, Universite de Sherbrooke, Sherbrooke, Quebec, Canada (1997). |
Elektrotechnische Zeitschrift, E. C. Zehmo/Dr. F. Meigner, Veriag von Julius Springer in Berlin, Apr. 22, 1909. |
Elektrische Bogen und thermisches Plasma, von W. Finkelnburg und H. Maecker, Encyclopedia of Physics, Berlin, Springer Verlag (1957), pp. pp. 299-301 and 440-444. |
Energy Balance of the High Pressure Mercury Discharge With Sodium- and Scandium-Lodide Additives by James T. Dakin and Richard P. Gilliard, Feb. 27, 1987, pp. 79-81. |
Characteristics of Rotationally Stabilized Long Plasma Arcs in a Chamber by Hsu-Chieh Yeh and Wen-Jei Yang, Department of Mechanical Engineering, The University of Michigan, Ann Arbor, Michigan 48104, Jan. 27, 1969, pp. 3687-3693. |
14. Einflussauberer mechanischer oder magnetischer Krafte auf den Lichtbogen, Handbuch der Physik, Bd. XXII 18 (1957), pp. 273-274. |
Principles of Arc Motion and Displacement, Heinz H. Maecker, Proceedings of the TECE, Arc Motion and Development, vol. 59, No. 4, Apr. 1971, pp. 439, 447-448. |
Uber die Temperatur in der Gassaule eines Lichtbogens, Von Alfred v. Engel und Max Steenbeck, Mit 7 Bildern, 1931, pp. 155-171. |
Untersuchungen am stabilisierten elektrischen Lichtbogen (Walzbogen) in Stickstoff und Kohlensaure bei Drucken von 1 bis 40 at., Von Rudolf Foitzik, Mit 34 Bildern, 1939, pp. 28-58. |
Temperatur und strahlungsmessungen am wasserstabilisierten Hochdruckbogen, Th. Peters, Mit 10 Figuren im Text, 1953, Zeitschrift fur Physik, Bd. 135, S. 573-592. |
Model and diagnostics of the high-pressure mercury discharge with sodium lodide additives, by James T. Dakin, Power Electronics Laboratory, Corporate Research and Development, General Electric Company, and Richard P. Gilliard, Lighting Research and Technical Services Operation, Lighting Business Group, General Electric Company, J. Appl. Phys. 60 (4), Aug. 15, 1986, pp. 1281-1288. |
On Convection Currents in High Pressure Mercury Arcs, by Carl Kenty, General Electric Vapor Lamp Company, Hoboken, New Jersey, Journal of Applied Physics, vol. 9, Jan. 1938, pp. 53-55, 63-66. |