Advanced laser-backlit grazing-incidence x-ray imaging systems for inertial confinement fusion research. I. Design

被引:14
作者
Bennett, GR [1 ]
机构
[1] Ktech Corp Inc, Sandia Natl Labs, Albuquerque, NM 87185 USA
关键词
D O I
10.1364/AO.40.004570
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
By use of a focusing configuration analogous to a Gregorian or a Cassegrain telescope, the on-axis aberration of a grazing-incidence spheric-based Kirkpatrick-Baez compound microscope may be precisely corrected. For finite fields, the off-axis performance degrades too rapidly for high-spatial-resolution imaging of even the smallest objects of interest, However, by use of ray-trace optimization it is possible to perturb the system such that the perfect, but impractical, on-axis performance is modestly degraded and uniformly distributed over a chosen object field. By use of this and other performance-enhancing features, two example ultrahigh-spatial-resolution laser-backlit x-ray microscope designs suitable for inertial confinement fusion (ICF) research have been developed. A companion paper [Appl. Opt. 40, 4588 (2001)] describing the tolerance analysis indicates that <0.5-mum spatial resolution at x-ray energies as high as 25 KeV is possible. As a prototype step, simpler noncompound devices are under consideration for Sandia National Laboratories' Z accelerator/Z-Beamlet ICF facility. (C) 2001 Optical Society of America.
引用
收藏
页码:4570 / 4587
页数:18
相关论文
共 54 条
[1]   The use of spherically bent crystals for the Nike laser plasmas spectral diagnostics and monochromatic imaging. [J].
Aglitskiy, Y ;
Lehecka, T ;
Obenschain, S ;
Bodner, S ;
Pawley, C ;
Gerber, K ;
Sethian, J ;
Brown, CM ;
Seely, J ;
Feldman, U ;
Holland, G .
APPLICATIONS OF X RAYS GENERATED FROM LASERS AND OTHER BRIGHT SOURCES, 1997, 3157 :104-115
[2]   High-resolution monochromatic x-ray imaging system based on spherically bent crystals [J].
Aglitskiy, Y ;
Lehecka, T ;
Obenschain, S ;
Bodner, S ;
Pawley, C ;
Gerber, K ;
Sethian, J ;
Brown, CM ;
Seely, J ;
Feldman, U ;
Holland, G .
APPLIED OPTICS, 1998, 37 (22) :5253-5261
[3]  
Attwood D. T., 2000, SOFT XRAYS EXTREME U
[4]  
BAEZ AV, 1957, XRAY MICROSCOPY MICR, P186
[5]   Fast imaging of hard x rays with a laboratory microscope [J].
Bakulin, AS ;
Durbin, SM ;
Jach, T ;
Pedulla, J .
APPLIED OPTICS, 2000, 39 (19) :3333-3337
[6]   X-ray imaging techniques on Z using the Z-Beamlet laser [J].
Bennett, GR ;
Landen, OL ;
Adams, RF ;
Porter, JL ;
Ruggles, LE ;
Simpson, WW ;
Wakefield, C .
REVIEW OF SCIENTIFIC INSTRUMENTS, 2001, 72 (01) :657-662
[7]   Advanced laser-backlit grazing -incidence x-ray imaging systems for inertial confinement fusion research. II. Tolerance analysis [J].
Bennett, GR ;
Folta, JA .
APPLIED OPTICS, 2001, 40 (25) :4588-4607
[8]   Moderate-convergence inertial confinement fusion implosions in tetrahedral hohlraums at Omega [J].
Bennett, GR ;
Wallace, JM ;
Murphy, TJ ;
Chrien, RE ;
Delamater, ND ;
Gobby, PL ;
Hauer, AA ;
Klare, KA ;
Oertel, JA ;
Watt, RG ;
Wilson, DC ;
Varnum, WS ;
Craxton, RS ;
Glebov, VY ;
Schnittman, JD ;
Stoeckl, C ;
Pollaine, SM ;
Turner, RE .
PHYSICS OF PLASMAS, 2000, 7 (06) :2594-2603
[9]   DEVELOPMENT AND CHARACTERIZATION OF A PAIR OF 30-40-PS X-RAY FRAMING CAMERAS [J].
BRADLEY, DK ;
BELL, PM ;
LANDEN, OL ;
KILKENNY, JD ;
OERTEL, J .
REVIEW OF SCIENTIFIC INSTRUMENTS, 1995, 66 (01) :716-718
[10]   X-ray imaging of targets irradiated by the Nike KrF laser [J].
Brown, C ;
Seely, J ;
Feldman, U ;
Obenschain, S ;
Bodner, S ;
Pawley, C ;
Gerber, K ;
Serlin, V ;
Sethian, J ;
Aglitskiy, Y ;
Lehecka, T ;
Holland, G .
REVIEW OF SCIENTIFIC INSTRUMENTS, 1997, 68 (01) :1099-1102