By R. K. Janev (auth.), R. K. Janev (eds.)
This well-illustrated source presents important cross-section info for the atomic and molecular collision tactics happening within the boundary sector of magnetically constrained fusion plasmas and in different laboratory and astrophysical low-temperature plasmas. The expertly assessed details during this noteworthy quantity comprises the latest experimental and theoretical effects provided in a handy structure. assurance contains the methods of electron-impact excitation and ionization of plasma facet atoms, electron-ion recombination, dissociative collision techniques related to electrons and a lot more.
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Extra resources for Atomic and Molecular Processes in Fusion Edge Plasmas
Fusion 34, 1203 (1994). H. Tawara and R. A. Phaneuf, Comments At. Mol. Phys. 21, 177 (1988). R. A. Phaneuf and R. K. Janev, in Atomic and Plasma-Material Interaction Processes in Controlled Thermonuelear Fusion (R. K. Janev and H. W. ), Elsevier, Amsterdam (1993). Chapter 2 Spectroscopic Processes and Data for Fusion Edge Plasmas W. L. Wiese 1. INTRODUCTION In this review of atOlnic structure data, all atomic species relevant to current and future fusion research facilities as compiled by Janev et al.
R. O·Brian. M. E. Wickliffe. J. E. Lawler. W. Whaling. and J. W. Brault. J. Opt. Soc. Am. B 8. 1185 (1991). 32. W. N. Lennard. W. Whaling. J. M. Sca10. and L. Testerrnan. Astrophys. J. 197. 517 (1975). spectroscopic Processes and Data for Fusion Edge Plasmas 33. 34. 35. 36. 37. 38. 39. 40. 41. 42. 43. 44. 45. 46. 47. 48. 49. 50. 51. 52. 53. 54. 55. 56. 57. 58. 59. 60. 61. 29 D. W. Duquette, E. A. Den Hartog, and J. E. Lawler, J. Quant. Speetrose. Radiat. Transfer 35, 281 (1986). W. Whaling and J.
These two principal data needs put rather different demands on the data base. For diagnostic studies, the typical need is for very accurate data, but the needs are often limited to just a few or even a single spectral li ne or spectral feature. On the other hand, for modeling purposes usually a large body of atomic structure data is needed. Such data are normally not confined to one chemical element but may include numerous elements and stages of ionization, depending on the task at hand. For modeling work, atomic structure data of moderate accuracy for individual spectral features will often suffice.