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Fundamentals of Electric Propulsion: Ion and Hall Thrusters

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Fundamentals of Electric Propulsion: Ion and Hall Thrusters ( fundamentals-electric-propulsion-ion-and-hall-thrusters )

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186 Chapter 4 [55] H. Kuninaka, I. Funaki, K. Nishiyama, Y. Shimizu, and K. Toki, “Results of 18,000 Hour Endurance Test of Microwave Discharge Ion Thruster Engineering Model,” AIAA-2000-3276, 36th Joint Propulsion Conference, Huntsville, Alabama, July 16–19, 2000. [56]Y. Arakawa and K. Ishihara, “A Numerical Code for Cusped Ion Thrusters,” IEPC-91-118, 22nd International Electric Propulsion Conference, Viareggio, Italy, October 14–17, 1991. [57] Y. Arakawa and P. J. Wilbur, “Finite Element Analysis of Plasma Flows in Cusped Discharge Chambers,” Journal of Propulsion and Power, vol. 7, no. 1, pp. 125–128, 1991. [58] R. Wirz and I. Katz, “Plasma Processes in DC Ion Thruster Discharge Chambers,” AIAA-2005-3690, 41st AIAA Joint Propulsion Conference, Tucson, Arizona, July 10–13, 2005. [59] R. Siegel and J. R. Howell, Thermal Radiation Heat Transfer, 4th Edition, New York: Taylor & Francis, pp. 226–227, 2002. [60] R. Wirz, “Discharge Plasma Processes of Ring-Cusp Ion Thrusters,” Ph.D. Dissertation, Aeronautics, California Institute of Technology, Pasadena, California, 2005. [61] Y. Arakawa and T. Yamada, “Monte Carlo Simulation of Primary Electron Motions in Cusped Discharge Chambers,” AIAA-1990-2654, 21st International Electric Propulsion Conference, Orlando, Florida, July 18– 20, 1990. [62] S. Mahalingam and J. A. Menart, “Primary Electron Modeling in the Discharge Chamber of an Ion Engine,” AIAA-2002-4262, 38th Joint Propulsion Conference, Indianapolis, Indiana, July 7–10, 2002. [63] J. P. Boris, “Relativistic Plasma Simulations-Optimization of a Hybrid Code,” Proc. 4th Conf. on Numerical Simulation of Plasmas, NRL Washington, Washington DC, 1970. [64] S. I. Braginskii, “Transport Processes in Plasmas,” Reviews of Plasma Physics, vol. 1, pp. 205–311, 1965. [65] J. Polk, J. R. Anderson, J. R. Brophy, V. K. Rawlin, M. J. Patterson, J. Sovey, and J. Hamley “An Overview of the Results from an 8200 Hour Wear Test of the NSTAR Ion Thruster,” AIAA Paper 99-2446, 35th Joint Propulsion Conference, Los Angeles, California, 1999. [66] R. E. Wirz and D. M. Goebel, “Ion Thruster Discharge Performance per Magnetic Field Geometry,” AIAA-2006-4487, 42nd Joint Propulsion Conference, Sacramento, California, July 10–13, 2006. [67] A. Sengupta, “Experimental Investigation of Discharge Plasma Magnetic Confinement in an NSTAR Ion Thruster,” AIAA-2005-4069, 41st Joint Propulsion Conference, Tucson, Arizona, July 10–13, 2005.

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