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A StarDriver-Class Laser Achieving 1 % Beam Uniformity in 1 ns

机译:StarDriver级激光在1 ns内实现1%的光束均匀度

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StarDriver was recently proposed as a highly flexible laser driver for inertial confinement fusion and high energy density physics. It envisions a laser drive consisting of many beamlets at an aperture where optical technology is well-developed, and each beamlet has energy similar to 100 J in a several times diffraction limited beam. Each beamlet has similar to 1.5THz of 2D SSD smoothing, but the ensemble of lasers has frequency bandwidth 2-10 %, thereby providing significant control of both hydrodynamic and laser-plasma instabilities. In this paper we illustrate the attractive features of the StarDriver concept with detailed calculations of beam smoothing for control of hydrodynamic instabilities in a direct drive ICF target, using a full 3D simulation of the laser drive. We describe here a StarDriver-class laser with 5120 physical beamlets disposed about the target chamber in 80 evenly spaced ports, each port containing 64 beamlets, each beamlet having about similar to 1.5THz of 2D SSD bandwidth and suitable phase plates, an aperture of similar to 65 mm, an energy of 80 J, and frequency-converted to similar to 351 nm. The drive at the target is similar to 400 kJ, has a well-behaved low L-mode spectrum, and smoothes very rapidly, reaching an asymptotic smoothness of < 1 % in less than 1 ns. 2 MJ of drive at the same smoothing performance may be obtained by increasing the number of beamlets. An attractive feature of StarDriver is that the tolerances on the individual beamlet parameters are quite relaxed.
机译:StarDriver最近被提出作为一种高度灵活的激光驱动器,用于惯性约束聚变和高能量密度物理学。它设想了一个激光器驱动器,该激光器驱动器由在光学技术得到很好发展的一个孔径处的许多子束组成,并且在数倍衍射极限束中,每个子束的能量类似于100J。每个子束都具有类似于1.5THz的2D SSD平滑度,但是激光器的整体具有2-10%的频率带宽,从而可以很好地控制流体动力学和激光等离子体的不稳定性。在本文中,我们将通过对激光驱动器进行完整的3D仿真,通过对光束平滑进行详细计算来说明StarDriver概念的诱人特性,以控制直接驱动ICF目标中的流体动力学不稳定性。我们在这里描述一个具有5120个物理小光束的StarDriver级激光器,该小光束在目标腔室的80个均匀间隔的端口中布置,每个端口包含64个小光束,每个小光束具有约类似于1.5THz的2D SSD带宽和合适的相位板,孔径相似到65毫米,能量为80焦耳,频率转换为类似于351纳米。目标上的驱动类似于400 kJ,具有良好的低L模式频谱,并且平滑非常快,在不到1 ns的时间内达到了<1%的渐近平滑度。通过增加子束的数量,可以获得具有相同平滑性能的2 MJ驱动器。 StarDriver的一个吸引人的功能是,各个子束参数的公差都非常宽松。

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