We discuss analytical fast-ion velocity distribution functions which are useful for basic plasma modelling as illustrated for the tokamak ITER. The Maxwellian is by far the most widespread model for ions and electrons in tokamaks and stellarators. The bi-Maxwellian and the drifting (bi-)Maxwellian are extensions allowing for anisotropy and bulk plasma flow, respectively. For example, fast ions generated by wave heating in the ion cyclotron range of frequencies are often described by bi-Maxwellians or so-called tail temperatures. The ring distribution can serve as a basic building block for arbitrary distributions or as a bump-on-tail in stability studies. The isotropic slowing-down distribution is a good model for fusion α-particles. The anisotropic slowing-down distribution occurs for anisotropic particle sources as is typical for neutral beam injection. We physically motivate these distribution functions and present analytical models in various coordinate systems commonly used by theorists and experimentalists. We further calculate 1D projections of the distribution functions onto a diagnostic line-of-sight to gain insight into measurements relying on the Doppler shift.

1.
R. P.
Feynman
,
R. B.
Leighton
, and
M.
Sands
,
The Feynman Lectures on Physics
(
Caltech
,
1963
).
2.
L. D.
Landau
and
E. M.
Lifshitz
,
Statistical Physics
, 3rd ed. (
Butterworth-Heinemann
,
1980
), Vol.
5
.
3.
K. S.
Thorne
and
R. D.
Blandford
,
Modern Classical Physics
(
Princeton University Press
,
2017
).
5.
J. C.
Maxwell
,
Philos. Trans.
157
,
49
(
1867
).
6.
L.
Boltzmann
,
Wien. Ber.
66
,
275
(
1872
).
7.
L.
Boltzmann
,
Wien. Ber.
76
,
373
(
1877
).
8.
L.
Spitzer
,
Physics of Fully Ionized Gases
(
Interscience
,
New York
,
1956
).
9.
D. V.
Sivukhin
,
Rev. Plasma Phys.
4
,
93
(
1966
).
11.
J. G.
Cordey
and
W. G. F.
Core
,
Phys. Fluids
17
,
1626
(
1974
).
12.
J. D.
Gaffey
,
J. Plasma Phys.
16
,
149
(
1976
).
14.
M.
Salewski
,
B.
Geiger
,
A.
Jacobsen
,
M.
García-Muñoz
,
W.
Heidbrink
,
S.
Korsholm
,
F.
Leipold
,
J.
Madsen
,
D.
Moseev
,
S.
Nielsen
,
J.
Rasmussen
,
M.
Stejner
,
G.
Tardini
,
M.
Weiland
, and
ASDEX Upgrade Team,
Nucl. Fusion
54
,
023005
(
2014
).
15.
M.
Salewski
,
M.
Nocente
,
A.
Jacobsen
,
F.
Binda
,
C.
Cazzaniga
,
G.
Ericsson
,
J.
Eriksson
,
G.
Gorini
,
C.
Hellesen
,
A.
Hjalmarsson
,
V.
Kiptily
,
T.
Koskela
,
S.
Korsholm
,
T.
Kurki-Suonio
,
F.
Leipold
,
J.
Madsen
,
D.
Moseev
,
S.
Nielsen
,
J.
Rasmussen
,
M.
Schneider
,
S.
Sharapov
,
M.
Stejner
,
M.
Tardocchi
, and
J. Contributors,
Nucl. Fusion
57
,
056001
(
2017
).
16.
A.
Pankin
,
D.
McCune
,
R.
Andre
,
G.
Bateman
, and
A.
Kritz
,
Comput. Phys. Commun.
159
,
157
(
2004
).
17.
D.
Moseev
,
M.
Salewski
,
B.
Geiger
,
M.
Garcia-Munoz
, and
M.
Nocente
,
Rev. Mod. Plasma Phys.
2
,
7
(
2018
).
18.
W. W.
Heidbrink
,
Y.
Luo
,
K. H.
Burrell
,
R. W.
Harvey
,
R. I.
Pinsker
, and
E.
Ruskov
,
Plasma Phys. Controlled Fusion
49
,
1457
(
2007
).
19.
M.
Salewski
,
S.
Nielsen
,
H.
Bindslev
,
V.
Furtula
,
N.
Gorelenkov
,
S.
Korsholm
,
F.
Leipold
,
F.
Meo
,
P.
Michelsen
,
D.
Moseev
, and
M.
Stejner
,
Nucl. Fusion
51
,
083014
(
2011
).
20.
R. J.
Goldston
and
P. H.
Rutherford
,
Introduction to Plasma Physics
(
IOP Publishing
,
1995
).
21.
R. O.
Dendy
,
R. J.
Hastie
,
K. G.
McClements
, and
T. J.
Martin
,
Phys. Plasmas
2
,
1623
(
1995
).
22.
W.
Cooper
,
J.
Graves
,
S.
Hirshman
,
T.
Yamaguchi
,
Y.
Narushima
,
S.
Okamura
,
S.
Sakakibara
,
C.
Suzuki
,
K.
Watanabe
,
H.
Yamada
, and
K.
Yamazaki
,
Nucl. Fusion
46
,
683
(
2006
).
23.
S.-R.
Huh
,
N.-K.
Kim
,
B.-K.
Jung
,
K.-J.
Chung
,
Y.-S.
Hwang
, and
G.-H.
Kim
,
Phys. Plasmas
22
,
033506
(
2015
).
24.
P. H.
Yoon
,
Phys. Plasmas
23
,
072114
(
2016
).
25.
M.
Salewski
,
B.
Geiger
,
A.
Jacobsen
,
I.
Abramovic
,
S.
Korsholm
,
F.
Leipold
,
B.
Madsen
,
J.
Madsen
,
R.
McDermott
,
D.
Moseev
,
S.
Nielsen
,
M.
Nocente
,
J.
Rasmussen
,
M.
Stejner
,
M.
Weiland
,
T. E. M.
Team
, and
T. A. U. Team
,
Nucl. Fusion
58
,
036017
(
2018
).
26.
M.
Vandas
and
P.
Hellinger
,
Phys. Plasmas
22
,
062107
(
2015
).
27.
J.
Sun
,
X.
Gao
,
L.
Chen
,
Q.
Lu
,
X.
Tao
, and
S.
Wang
,
Phys. Plasmas
23
,
022901
(
2016
).
28.
C.
Hellesen
,
M. G.
Johnson
,
E. A.
Sundén
,
S.
Conroy
,
G.
Ericsson
,
J.
Eriksson
,
H.
Sjöstrand
,
M.
Weiszflog
,
T.
Johnson
,
G.
Gorini
,
M.
Nocente
,
M.
Tardocchi
,
V.
Kiptily
,
S.
Pinches
,
S.
Sharapov
, and
J. E. Contributors
,
Nucl. Fusion
53
,
113009
(
2013
).
29.
D.
Winske
,
C. S.
Wu
,
Y. Y.
Li
,
Z. Z.
Mou
, and
S. Y.
Guo
,
J. Geophys. Res.: Space Phys.
90
,
2713
, https://doi.org/10.1029/JA090iA03p02713 (
1985
).
30.
V.
Florinski
,
G. P.
Zank
,
J.
Heerikhuisen
,
Q.
Hu
, and
I.
Khazanov
,
Astrophys. J.
719
,
1097
(
2010
).
31.
T.
Umeda
,
S.
Matsukiyo
,
T.
Amano
, and
Y.
Miyoshi
,
Phys. Plasmas
19
,
072107
(
2012
).
32.
E. J.
Summerlin
,
A. F.
Vinas
,
T. E.
Moore
,
E. R.
Christian
, and
J. F.
Cooper
,
Astrophys. J.
793
,
93
(
2014
).
33.
F.
Hadi
,
P. H.
Yoon
, and
A.
Qamar
,
Phys. Plasmas
22
,
022112
(
2015
).
34.
M.
Salewski
,
B.
Geiger
,
D.
Moseev
,
W. W.
Heidbrink
,
A. S.
Jacobsen
,
S. B.
Korsholm
,
F.
Leipold
,
J.
Madsen
,
S. K.
Nielsen
,
J.
Rasmussen
,
M.
Stejner
,
M.
Weiland
, and
ASDEX Upgrade Team
,
Plasma Phys. Controlled Fusion
56
,
105005
(
2014
).
35.
H. ITER Physics Expert Group on Energetic Particles
,
C.
Drive
, and
I. P. B. Editors
,
Nucl. Fusion
39
,
2471
(
1999
).
36.
M.
Salewski
,
M.
Nocente
,
B.
Madsen
,
I.
Abramovic
,
M.
Fitzgerald
,
G.
Gorini
,
P.
Hansen
,
W.
Heidbrink
,
A.
Jacobsen
,
T.
Jensen
,
V.
Kiptily
,
E.
Klinkby
,
S.
Korsholm
,
T.
Kurki-Suonio
,
A.
Larsen
,
F.
Leipold
,
D.
Moseev
,
S.
Nielsen
,
S.
Pinches
,
J.
Rasmussen
,
M.
Rebai
,
M.
Schneider
,
A.
Shevelev
,
S.
Sipilä
,
M.
Stejner
, and
M.
Tardocchi
,
Nucl. Fusion
58
,
096019
(
2018
).
37.
P.
Helander
and
D. J.
Sigmar
,
Collisional Transport in Magnetized Plasmas
(
Cambridge University Press
,
2002
).
38.
C.
Angiono
and
A. G.
Peeters
,
Phys. Plasmas
15
,
052307
(
2008
).
39.
A.
Donne
,
A.
Costley
,
R.
Barnsley
,
H.
Bindslev
,
R.
Boivin
,
G.
Conway
,
R.
Fisher
,
R.
Giannella
,
H.
Hartfuss
,
M.
von Hellermann
,
E.
Hodgson
,
L.
Ingesson
,
K.
Itami
,
D.
Johnson
,
Y.
Kawano
,
T.
Kondoh
,
A.
Krasilnikov
,
Y.
Kusama
,
A.
Litnovsky
,
P.
Lotte
,
P.
Nielsen
,
T.
Nishitani
,
F.
Orsitto
,
B.
Peterson
,
G.
Razdobarin
,
J.
Sanchez
,
M.
Sasao
,
T.
Sugie
,
G.
Vayakis
,
V.
Voitsenya
,
K.
Vukolov
,
C.
Walker
,
K.
Young
, and
ITPA Topical Group on Diagnostics
,
Nucl. Fusion
47
,
S337
(
2007
).
40.
R.
Goldston
,
D.
McCune
,
H.
Towner
,
S.
Davis
,
R.
Hawryluk
, and
G.
Schmidt
,
J. Comput. Phys.
43
,
61
(
1981
).
41.
E.
Hirvijoki
,
O.
Asunta
,
T.
Koskela
,
T.
Kurki-Suonio
,
J.
Miettunen
,
S.
Sipilä
,
A.
Snicker
, and
S.
Äkäslompolo
,
Comput. Phys. Commun.
185
,
1310
(
2014
).
42.
M.
Salewski
,
M.
Nocente
,
G.
Gorini
,
A.
Jacobsen
,
V.
Kiptily
,
S.
Korsholm
,
F.
Leipold
,
J.
Madsen
,
D.
Moseev
,
S.
Nielsen
,
J.
Rasmussen
,
M.
Stejner
,
M.
Tardocchi
, and
J. Contributors
,
Nucl. Fusion
56
,
046009
(
2016
).
43.
M.
Weiland
,
R.
Bilato
,
R.
Dux
,
B.
Geiger
,
A.
Lebschy
,
F.
Felici
,
R.
Fischer
,
D.
Rittich
, and
M.
van Zeeland
,
ASDEX Upgrade Team, and Eurofusion MST1 Team
,
Nucl. Fusion
58
,
082032
(
2018
).
44.
L.
Stagner
and
W. W.
Heidbrink
,
Phys. Plasmas
24
,
092505
(
2017
).
45.
S.
Pinches
,
L.
Appel
,
J.
Candy
,
S.
Sharapov
,
H.
Berk
,
D.
Borba
,
B.
Breizman
,
T.
Hender
,
K.
Hopcraft
,
G.
Huysmans
, and
W.
Kerner
,
Comput. Phys. Commun.
111
,
133
(
1998
).
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