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Simulation of stimulated Brillouin scattering and stimulated Raman scattering in shock ignition

机译:冲击点火中受激布里渊散射和拉曼散射的模拟

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We study stimulated Brillouin scattering (SBS) and stimulated Raman scattering (SRS) in shock ignition by comparing fluid and particle-in-cell (PIC) simulations. Under typical parameters for the OMEGA experiments [Theobald et al., Phys. Plasmas 19, 102706 (2012)], a series of 1D fluid simulations with laser intensities ranging between 2 x 10(15) and 2 x 10(16) W/cm(2) finds that SBS is the dominant instability, which increases significantly with the incident intensity. Strong pump depletion caused by SBS and SRS limits the transmitted intensity at the 0.17n(c) to be less than 3.5 x 10(15) W/cm(2). The PIC simulations show similar physics but with higher saturation levels for SBS and SRS convective modes and stronger pump depletion due to higher seed levels for the electromagnetic fields in PIC codes. Plasma flow profiles are found to be important in proper modeling of SBS and limiting its reflectivity in both the fluid and PIC simulations. (c) 2016 AIP Publishing LLC.
机译:通过比较流体和细胞内颗粒(PIC)模拟,我们研究了冲击点火中的受激布里渊散射(SBS)和受激拉曼散射(SRS)。在OMEGA实验的典型参数下[Theobald et al。,Phys。 Plasmas 19,102706(2012)],一系列1D流体模拟,激光强度在2 x 10(15)和2 x 10(16)W / cm(2)之间,发现SBS是主要的不稳定性,并显着增加与入射强度有关。由SBS和SRS引起的强大的泵损耗将0.17n(c)处的传输强度限制为小于3.5 x 10(15)W / cm(2)。 PIC模拟显示相似的物​​理原理,但由于PIC代码中电磁场的种子级较高,因此SBS和SRS对流模式的饱和度较高,泵损耗更强。发现等离子体流动曲线对于SBS的正确建模以及在流体和PIC模拟中限制其反射率都很重要。 (c)2016 AIP Publishing LLC。

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