Li C K, Séguin F H, Frenje J A, Rygg J R, Petrasso R D, Town R P J, Amendt P A, Hatchett S P, Landen O L, Mackinnon A J, Patel P K, Smalyuk V A, Sangster T C, Knauer J P
Plasma Science and Fusion Center, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.
Phys Rev Lett. 2006 Sep 29;97(13):135003. doi: 10.1103/PhysRevLett.97.135003. Epub 2006 Sep 28.
Electromagnetic (E/B) fields generated by the interaction with plasmas of long-pulse, low-intensity laser beams relevant to inertial confinement fusion have been measured for the first time using novel monoenergetic proton radiography methods. High-resolution, time-gated radiography images of a plastic foil driven by a 10(14) W/cm(2) laser implied B fields of approximately 0.5 MG and E fields of approximately 1.5 x 10(8) V/m. Simulations of these experiments with LASNEX+LSP have been performed and are in overall (though not exact) agreement with the data both for field strengths and for spatial distributions; this is the first direct experimental test of the laser-generated B-field package in LASNEX. The experiments also demonstrated that laser phase plates substantially reduce medium-scale chaotic field structure.
利用新型单能质子射线照相法首次测量了与惯性约束聚变相关的长脉冲、低强度激光束与等离子体相互作用产生的电磁(E/B)场。由10¹⁴W/cm²激光驱动的塑料箔的高分辨率、时间选通射线照相图像显示,B场约为0.5MG,E场约为1.5×10⁸V/m。已使用LASNEX+LSP对这些实验进行了模拟,模拟结果在场强和空间分布方面与数据总体上(尽管不完全)一致;这是对LASNEX中激光产生的B场包的首次直接实验测试。实验还表明,激光相位板可大幅减少中等尺度的混沌场结构。