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High Energy Density Ion Beam from a Focusing Shaped Target in the Radiation Pressure Regime

机译:高能密度离子束从辐射压力调节中的聚焦形靶

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We report the focusing of a shaped thin target by a circular-polarized laser pulse at 1022 W/cm2 intensity, to a low-emittance, quasi-monoenergetic proton beam. The target shape is designed to be simultaneously deformed and focused into a cubic micron spot by the radiation pressure during its acceleration. A simple model reminiscent of geometric optics of the ions is developed. The model predicts the self-consistent dynamics of the nanostructured thin target, as well as the targets shape that is necessary for focusing without aberrations. Three-dimensional particle-in-cell simulations show that the focal length and the final energy are in good agreement with the scaling laws obtained from the geometric optics model. Extensive scans of the laser and target parameters identify the stable propagation regime where the Rayleigh-Taylor (RT)-like instability is suppressed. Stable focusing is found at different laser powers (from petawatt to multi-petawatt). Focused proton beam with number density of order 1023 cm-3 and energy density up to 2×1013 J/cm3 at the focal point is observed in simulation with laser power 35 PW.
机译:我们在10中通过圆极化激光脉冲报告形状薄目标的聚焦 22 w / cm. 2 强度,低发射,准单元素质子梁。目标形状被设计成通过辐射压力在其加速度期间同时变形并聚焦到立方微米点。开发了一个简单的模型,使离子几何光学元件中断。该模型预测纳米结构薄目标的自我一致动态,以及对聚焦而无像差的目标形状。三维粒子内仿真表明,焦距和最终能量与从几何光学模型中获得的缩放法律吻合良好。激光和目标参数的广泛扫描识别稳定的传播状态,其中雷可泰勒(Rt)抑制不稳定性。在不同的激光功率(从PETAWATT到Multi-Petawatt)发现稳定的聚焦。聚焦质子梁,数量密度10 23 厘米 -3 和能量密度高达2×10 13 J / CM. 3 在使用激光功率35 PW的模拟中观察到焦点。

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