Marshall Rosenbluth’s extensive contributions included seminal analysis of the physics of the laser-plasma interaction and review and advocacy of the inertial fusion program. Over the last decade he avidly followed the efforts of many scientists around the world who have studied Fast Ignition, an alternate form of inertial fusion. In this scheme, the fuel is first compressed by a conventional inertial confinement fusion driver and then ignited by a short (10ps) pulse, high-power laser. Due to technological advances, such short-pulse lasers can focus power equivalent to that produced by the hydrodynamic stagnation of conventional inertial fusion capsules. This review will discuss the ignition requirements and gain curves starting from simple models and then describe how these are modified, as more detailed physics understanding is included. The critical design issues revolve around two questions: How can the compressed fuel be efficiently assembled? And how can power from the driver be delivered efficiently to the ignition region? Schemes to shorten the distance between the critical surface where the ignitor laser energy is nominally deposited and the ignition region will de discussed. The current status of Fast Ignition research is compared with our requirements for success. Future research directions will also be outlined.

1.
M.
Tabak
,
J. H.
Hammer
,
M. E.
Glinsky
,
W. L.
Kruer
,
S. C.
Wilks
,
J.
Woodworth
,
E. M.
Campbell
,
M. D.
Perry
, and
R. J.
Mason
,
Phys. Plasmas
1
,
1626
(
1994
).
2.
D.
Strickland
and
G.
Mourou
,
Opt. Commun.
55
,
447
(
1985
).
3.
M.
Roth
,
T. E.
Cowan
,
M. H.
Key
 et al.,
Phys. Rev. Lett.
86
,
436
(
2001
).
4.

Compact disks from the latest Workshops on Fast Ignition will contain material beyond what can be discussed in this review. The 2002 Workshop was held in St. Petes Beach, FL and was organized by M. H. Key ([email protected]). The 2004 Workshop was held in Kyoto, Japan and organized by K. A. Tanaka ([email protected])

5.
S.
Atzeni
,
Phys. Plasmas
6
,
3316
(
1999
).
6.
M.
Herrmann
,
S.
Hatchett
, and
M.
Tabak
,
Bull. Am. Phys. Soc.
46
,
106
(
2001
).
7.
J. D.
Lindl
,
Inertial Confinement Fusion. The Quest for Ignition and Energy Gain Using Indirect Drive
(
Springer
, New York,
1998
).
8.
S. M.
Pollaine
and
J. D.
Lindl
,
Nucl. Fusion
26
,
1719
(
1986
).
9.
S. C.
Wilks
,
W. L.
Kruer
,
M.
Tabak
, and
A. B.
Langdon
,
Phys. Rev. Lett.
69
,
1383
(
1993
).
10.
M.
Tabak
,
S.
Atzeni
,
E. M.
Campbell
and
K.
Tanaka
, “
Introduction to Fast Ignition
,”
Fusion Sci. Technol.
(submitted);
M.
Tabak
and
D. A.
Callahan
, “
Models of gain curves for fast ignition
,”
Nucl. Instrum. Methods Phys. Res. A
(to be published).
11.
W. L.
Kruer
,
Phys. Plasmas
10
,
2709
(
2003
).
12.
K.
Yasuike
,
M. H.
Key
,
S. P.
Hatchett
 et al.,
Rev. Sci. Instrum.
72
,
1236
(
2001
).
13.
J. A.
Halbleib
and
T. A.
Mehlhorn
,
Trans. Am. Nucl. Soc.
52
,
378
(
1986
).
14.
C.
Deutsch
and
P.
Fromy
,
Laser Part. Beams
18
,
301
(
2000
).
15.
C.
Deutsch
,
H.
Furukawa
,
K.
Mima
 et al.,
Phys. Rev. Lett.
77
,
2483
(
1996
).
16.
L. O.
Silva
,
R. A.
Fonseca
,
J. W.
Tonge
,
W. B.
Mori
, and
J. M.
Dawson
,
Phys. Plasmas
9
,
2458
(
2002
);
T.-Y. B.
Yang
,
J.
Arons
, and
A. B.
Langdon
,
Phys. Plasmas
1
,
3059
(
1994
).
17.
S. P.
Hatchett
,
C. G.
Brown
,
T. E.
Cowan
 et al.,
Phys. Plasmas
7
,
2076
(
2000
).
18.
M.
Honda
,
J.
Meyer-ter-Vehn
, and
A.
Pukhov
,
Phys. Rev. Lett.
85
,
2128
(
2000
);
[PubMed]
B. F.
Lasinski
,
A. B.
Langdon
,
M. H.
Key
, and
S. P.
Hatchett
, “
Filamentation of relativistic electron beams: Another look
,”
Fourth International Workshop on Laser-Plasma Interaction Physics
, Banff, Canada, 21–24 February
2001
.
19.
M. H.
Key
,
F.
Amiranoff
,
C.
Andersen
,
S. D.
Batani
,
S. D.
Baton
,
T.
Cowan
,
N.
Fisch
,
R. R.
Freeman
,
L.
Gremillet
,
T.
Hall
,
S. P.
Hatchett
,
J. M.
Hill
,
J. A.
King
,
R
Kodama
,
J. A.
Koch
,
M.
Koenig
,
B.
Lasinski
,
B.
Langdon
,
A. J.
MacKinnon
,
E.
Martinolli
,
P.
Norreys
,
P.
Parks
,
E.
Perelli-Cippo
,
M. Rabec
Le Gloahec
,
M.
Rosenbluth
,
C.
Rousseaux
,
J. J.
Santos
,
F.
Scianitti
,
R.
Snavely
,
M.
Tabak
,
K.
Tanaka
,
R. P. J.
Town
,
T.
Tsutumi
, and
R. B.
Stephens
, in
Inertial Fusion Sciences and Applications 2003
, edited by
K.
Tanaka
,
D. D.
Meyerhofer
, and
J.
Meyer-ter-Vehn
(
Elsevier
, Paris,
2004
), p.
353
.
20.
R. P. J.
Town
,
C.
Chen
,
L. A.
Cottrill
 et al., “
Simulations of electron transport for Fast Ignition using LSP
,”
Nucl. Instrum. Methods Phys. Res. A
(to be published).
21.
D. R.
Welch
,
D. V.
Rose
,
B. V.
Oliver
, and
R. E.
Clark
,
Nucl. Instrum. Methods Phys. Res. A
464
,
134
(
2001
).
22.
F. N.
Beg
,
A. R.
Bell
,
A. E.
Dangor
,
C. N.
Danson
,
A. P.
Fews
,
M. E.
Glinsky
,
B. A.
Hammel
,
P.
Lee
,
P. A.
Norreys
, and
M.
Tatarakis
,
Phys. Plasmas
4
,
447
(
1997
).
23.
Y. T.
Lee
and
R. M.
More
,
Phys. Fluids
27
,
1273
(
1984
).
24.
R. B.
Stephens
,
Y.
Aglitskiy
,
F.
Amiranoff
,
C.
Andersen
,
D.
Batani
,
S. D.
Baton
,
T.
Cowan
,
R. R.
Freeman
,
T.
Hall
,
S. P.
Hatchett
,
J. M.
Hill
,
M. H.
Key
,
J. A.
King
,
J. A.
Koch
,
M.
Koenig
,
A. J.
MacKinnon
,
K. L.
Lancaster
,
E.
Martinolli
,
P.
Norreys
,
E.
Perelli-Cippo
,
M. Rabec
Le Gloahec
,
C.
Rousseaux
,
J. J.
Santos
,
F.
Scianitti
, and
R. A.
Snavely
,
Phys. Rev. E
69
,
066414
(
2004
).
25.
P. E.
Young
,
M. E.
Foord
,
J. H.
Hammer
,
W. L.
Kruer
,
M.
Tabak
and
S. C.
Wilks
,
Phys. Rev. Lett.
75
,
1082
(
1995
);
[PubMed]
K. A.
Tanaka
,
H.
Hashimoto
,
R.
Kodama
,
K.
Mima
,
Y.
Sentoku
, and
K.
Takahashi
,
Phys. Rev. E
60
,
3283
(
1999
);
K.
Takahashi
,
R.
Kodama
,
K. A.
Tanaka
,
H.
Hashimoto
,
Y.
Kato
,
K.
Mima
,
F. A.
Weber
,
T. W.
Barbee
, Jr.
, and
L. B.
Da Silva
,
Phys. Rev. Lett.
84
,
2405
(
2000
).
[PubMed]
26.
K. A.
Tanaka
, private communication (
2004
).
27.
S. C.
Wilks
,
A. B.
Langdon
,
T. E.
Cowan
 et al.,
Phys. Plasmas
8
,
542
(
2001
);
J.
Denavit
,
Phys. Fluids
22
,
1384
(
1979
).
28.
R. A.
Snavely
,
M. H.
Key
,
S. P.
Hatchett
 et al.,
Phys. Rev. Lett.
85
,
2945
(
2000
).
29.
P. K.
Patel
,
A. J.
MacKinnon
,
T. E.
Cowan
 et al.,
Phys. Rev. Lett.
91
,
125004
(
2003
).
30.
J. D.
Bonlie
,
F.
Patterson
,
D.
Price
,
B.
White
, and
P.
Springer
,
Appl. Phys. B: Lasers Opt.
70
,
S155
(
2000
);
F.
Patterson
,
J.
Bonlie
,
D.
Price
,
B.
White
, and
P.
Springer
,
Ultrafast Optics 99 Conference
, Ascona, Switzerland, 11–17 July
1999
.
31.
M.
Tabak
,
J. H.
Hammer
,
E. M.
Campbell
 et al.,
Lawrence Livermore National Laboratory patent disclosure
, IL8826B,
1997
,
Lawrence Livermore National Laboratory, Livermore
, CA;
S.
Hatchett
and
M.
Tabak
, “
Cone focus geometry for Fast Ignition
,” presentation given at
30th Annual Anomalous Absorption Conference
, Ocean City, MD (April
2000
);
S.
Hatchett
,
M.
Herrmann
,
M.
Tabak
 et al.,
Bull. Am. Phys. Soc.
46
,
47
(
2001
).
32.
R.
Stephens
,
S. P.
Hatchett
,
M.
Tabak
 et al.,
Phys. Plasmas
12
,
056312
(
2004
).
33.
Y.
Sentoku
,
K.
Mima
,
H.
Ruhl
,
Y.
Kodama
,
R.
Kodama
, and
T. E.
Cowan
,
Phys. Plasmas
11
,
3083
(
2004
).
34.
R. P. J.
Town
,
L.
Cottrill
,
W. L.
Kruer
 et al., “
LSP calculations of electron transport experiments
,” International Workshop of Fast Ignition and High Field Physics, Kyoto,
2004
.
35.
R.
Kodama
,
H.
Azechi
,
H.
Fujita
 et al., in Ref. 19 , p.
333
.
36.
R.
Kodama
,
P. A.
Norreys
,
K.
Mima
 et al.,
Nature (London)
412
,
798
(
2001
);
R.
Kodama
,
H.
Shiraga
,
K.
Shigemori
 et al.,
Nature (London)
418
,
933
(
2001
).
37.
N.
Miyanaga
,
H.
Azechi
,
K. A.
Tanaka
 et al., in Ref. 19.
38.
Eye on Technology
,
OE Mag.
4
,
8
(
2004
).
39.
C. P. J.
Barty
,
M.
Key
,
J.
Britten
 et al., in Ref. 19.
40.
G. R.
Bennett
,
O. L.
Landen
,
R. F.
Adams
 et al.,
Rev. Sci. Instrum.
74
,
657
(
2001
).
You do not currently have access to this content.