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Indirect drive experiments utilizing multiple beam cones in cylindrical hohlraums on OMEGA

机译:在OMEGA上利用圆柱形横梁中的多个束锥进行间接驱动实验

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Current plans for time-dependent control of flux asymmetry in the National Ignition Facility [J. A. Paisner, J. D. Boyes, S. A. Kumpan, and M. Sorem, "The National Ignition Facility Project," ICF Quart. 5, 110 (1995)] hohlraums rely on multiple beam cones with different laser power temporal profiles in each cone. Experiments with multiple beam cones have begun on the Omega laser facility [T. R. Boehly et al., Opt. Commun. 133, 495 (1997)] at the University of Rochester. In addition to allowing symmetry experiments similar to those performed on Nova [A. Hauer et nl., Rev. Sci. Instrum. 66, 672 (1995)], the Omega facility allows multiple beam cones to be moved independently to confirm our ability to model the resulting implosion image shapes. Results indicate that hohlraum symmetry behaves similarly with multiple rings of beams as with a single ring, but with the weighted beam spot position used to parametrize the beam pointing. [References: 14]
机译:国家点火设施通量不对称性随时间的控制的现行计划[J. A. Paisner,J。D. Boyes,S。A. Kumpan和M. Sorem,“国家点火设施项目”,ICF Quart。 [5,110(1995)] hohlraums依赖于多个锥束,每个锥束具有不同的激光功率时间分布。在Omega激光设备上开始了具有多个光束锥的实验[T. R. Boehly等,选项公社133,495(1997)]。除了允许进行与Nova [A. Hauer等,科学版。仪器[66,672(1995)],Omega设施允许多个束锥独立移动,以确认我们能够对所得内爆图像形状进行建模。结果表明,光束的多圈与单圈类似,但具有加权的光束光斑位置,用于对光束指向进行参数化,因此其对称性类似。 [参考:14]

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