Extreme ultraviolet probing of laser imprint in a thin foil using an x-ray laser backlighter

被引:8
作者
Kalantar, DH
DaSilva, LB
Glendinning, SG
Remington, BA
Weber, F
Weber, SV
Key, MH
Kim, NS
Neely, D
Wolfrum, E
Zhang, J
Wark, JS
Demir, A
Lin, J
Smith, R
Tallents, GJ
Lewis, CLS
MacPhee, A
Warwick, J
Knauer, JP
机构
[1] RUTHERFORD APPLETON LAB,CENT LASER FACIL,DIDCOT OX11 0QX,OXON,ENGLAND
[2] UNIV OXFORD,DEPT PHYS,CLARENDON LAB,OXFORD OX1 3PU,ENGLAND
[3] UNIV ESSEX,DEPT PHYS,COLCHESTER CO4 3SQ,ESSEX,ENGLAND
[4] QUEENS UNIV BELFAST,DEPT PURE & APPL PHYS,BELFAST BT7 1NN,ANTRIM,NORTH IRELAND
[5] UNIV ROCHESTER,LASER ENERGET LAB,ROCHESTER,NY
关键词
D O I
10.1063/1.1147747
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
For direct drive inertial confinement fusion, a capsule is imploded by directly illuminating the surface with laser light. Beam smoothing and uniformity of illumination affect the seeding of instabilities at the ablation front. We have developed a technique for studying the imprint of a laser beam on a thin foil using an x-ray laser as an extreme ultraviolet (XUV) backlighter. We use multilayer XUV optics to relay the x-ray laser onto the directly driven foil, and then to image the foil modulation onto a charged coupled device camera. This technique allows us to measure small fractional variations in the foil thickness. We have measured the modulation due to imprint from a low intensity 0.35 mu m drive beam incident on a 3 mu m Si foil using an yttrium x-ray laser on Nova. We present results from a similar technique to measure the imprinted modulation due to a low intensity 0.53 mu m drive beam incident on a 2 mu m Al foil using a germanium x-ray laser at the Vulcan facility. (C) 1997 American Institute of Physics.
引用
收藏
页码:802 / 805
页数:4
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