To enable laser-based radiography of high energy density physics events on the Z-Accelerator[4,5] at Sandia National Laboratories, a facility known as the Z-Backlighter has been developed. Two Nd:Phosphate glass lasers are used to create x-rays and/or proton beams capable of this radiographic diagnosis: Z-Beamlet (a multi-kilojoule laser operating at 527nm in a few nanoseconds) and Z-Petawatt (a several hundred joule laser operating at 1054nm in the subpicosecond regime) [1,2]. At the energy densities used in these systems, it is necessary to use high damage threshold optical materials, some of which are poorly characterized (especially for the sub-picosecond pulse). For example, Sandia has developed a meter-class dielectric coating capability for system optics. Damage testing can be performed by external facilities for nanosecond 532nm pulses, measuring high reflector coating damage thresholds >80J/cm2 and antireflection coating damage thresholds >20J/cm2 [3]. However, available external testing capabilities do not use femtosecond/picosecond scale laser pulses. To this end, we have constructed a sub-picoseond-laser-based optical damage test system. The damage tester system also allows for testing in a vacuum vessel, which is relevant since many optics in the Z-Backlighter system are used in vacuum. This paper will present the results of laser induced damage testing performed in both atmosphere and in vacuum, with 1054nm sub-picosecond laser pulses. Optical materials/coatings discussed are: bare fused silica and protected gold used for benchmarking; BK7; Zerodur; protected silver; and dielectric optical coatings (halfnia/silica layer pairs) produced by Sandia's in-house meter-class coating capability.
[1]
R. G. Adams,et al.
Z-Beamlet: a multikilojoule, terawatt-class laser system.
,
2005,
Applied optics.
[2]
John L. Porter,et al.
X-ray imaging techniques on Z using the Z-Beamlet laser
,
2001
.
[3]
Brent C. Stuart,et al.
Optical ablation by high-power short-pulse lasers
,
1996
.
[4]
Jens Schwarz,et al.
Short pulse laser damage testing on nitrocellulose and polyimide thin films in vacuum with application to laser debris shields
,
2008,
Laser Damage.
[5]
G. Chandler,et al.
Tungsten wire-array Z-pinch experiments at 200 TW and 2 MJ
,
1998
.
[6]
Jens Schwarz,et al.
A hybrid OPCPA/Nd:phosphate glass multi-terawatt laser system for seeding of a petawatt laser
,
2008
.