Vallières S, Salvadori M, Puyuelo-Valdes P, Payeur S, Fourmaux S, Consoli F, Verona C, d'Humières E, Chicoine M, Roorda S, Schiettekatte F, Antici P
INRS-EMT, 1650 Boul. Lionel-Boulet, Varennes, Quebec J3X 1P7, Canada.
ENEA, Via Enrico Fermi 45, Frascati 00044, Italy.
Rev Sci Instrum. 2020 Oct 1;91(10):103303. doi: 10.1063/5.0020257.
We report on the cross-calibration of Thomson Parabola (TP) and Time-of-Flight (TOF) detectors as particle diagnostics, implemented on the most recent setup of the ALLS 100 TW laser-driven ion acceleration beamline. The Microchannel Plate (MCP) used for particle detection in the TP spectrometer has been calibrated in intensity on the tandem linear accelerator at the Université de Montréal. The experimental data points of the scaling factor were obtained by performing a pixel cluster analysis of single proton impacts on the MCP. A semi-empirical model was extrapolated and fitted to the data to apply the calibration also to higher kinetic energies and to extend it to other ion species. Two TOF lines using diamond detectors, placed at +6° and -9° with respect to the target-normal axis, were benchmarked against the TP spectrometer measurements to determine the field integrals related to its electric and magnetic dispersions. The mean integral proton numbers obtained on the beamline were about 4.1 × 10 protons/sr with a standard deviation of 15% in the central section of the spectrum around 3 MeV, hence witnessing the high repeatability of the proton bunch generation. The mean maximum energy was of 7.3 ± 0.5 MeV, well in agreement with similar other 100 TW-scale laser facilities, with the best shots reaching 9 MeV and nearly 10 protons/sr. The used particle diagnostics are compatible with the development of a high-repetition rate targetry due to their fast online readout and are therefore a crucial step in the automation of any beamline.
我们报告了在ALLS 100 TW激光驱动离子加速束线的最新装置上实施的汤姆逊抛物线(TP)探测器和飞行时间(TOF)探测器作为粒子诊断工具的交叉校准情况。用于TP光谱仪中粒子探测的微通道板(MCP)已在蒙特利尔大学的串联线性加速器上进行了强度校准。通过对单个质子撞击MCP进行像素簇分析获得了比例因子的实验数据点。外推并拟合了一个半经验模型到数据上,以便将校准应用于更高的动能,并将其扩展到其他离子种类。两条使用金刚石探测器的TOF线,相对于靶法线轴分别置于+6°和 -9°,与TP光谱仪的测量结果进行了基准比对,以确定与其电和磁色散相关的场积分。在束线上获得的平均积分质子数在3 MeV左右的光谱中心部分约为4.1×10个质子/球面度,标准偏差为15%,这证明了质子束产生的高重复性。平均最大能量为7.3±0.5 MeV,与其他类似的100 TW级激光装置吻合良好,最佳束流可达9 MeV,且接近10个质子/球面度。所使用的粒子诊断工具因其快速的在线读出功能而与高重复率靶的开发兼容,因此是任何束线自动化过程中的关键一步。