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Design and mockup tests of the RING photo-neutralizer optical cavity for DEMO NBI

机译:演示NBI RING光中和器光学腔的设计和样机测试

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High energy Neutral Beam Injection (NBI) is one of the methods being considered to heat EU DEMO plasma. A major issue of present NBI systems is the limited efficiency of the gas neutralizer (for ITER NBI (similar to)55%), which impacts on the overall system efficiency. An attractive method, but still undemonstrated at full performance, is the photo-neutralization of the negative D-ion beam, with an expected neutralization efficiency for a full-scale DEMO NBI up to 90%.A possible scheme for photo-neutralization is named RING (Recirculation Injection by Nonlinear Gating) where a laser second harmonic is generated and trapped within a non-resonant optical cavity. A mockup of the optical cavity is being operated in Consorzio RFX with a low repetition rate Nd:YAG laser (f = 10 Hz, lambda = 1064 nm) to study the feasibility of the RING concept and its potentiality for a full-scale NBI photo-neutralizer. The 2nd harmonic generation efficiency has been measured using a set of 3 Lithium Triborate (LBO) crystals in a disk configuration, confirming the non-linearity of the process with the total crystal thickness. Losses during the 2nd harmonic recirculation in the cavity have been quantified, and the number of 2nd harmonic roundtrips has been estimated with photodiode measurements in order to evaluate the optical cavity performance. Further improvements are considered to increase the optical cavity photon accumulation.
机译:高能中性束注入(NBI)是考虑用来加热EU DEMO等离子体的方法之一。当前NBI系统的主要问题是气体中和器的效率有限(对于ITER NBI(约)55%),这会影响整个系统的效率。负D离子束的光中和是一种有吸引力的方法,但仍无法充分发挥其性能,对于全尺寸DEMO NBI的预期中和效率可达90%。 RING(通过非线性门控的再循环注入),在其中产生激光二次谐波并将其捕获在非谐振光学腔内。在Consorzio RFX中使用低重复频率Nd:YAG激光(f = 10 Hz,λ= 1064 nm)操作光学腔的模型,以研究RING概念的可行性及其在NBI全尺寸照片中的潜力-中和剂。使用一组3个三硼酸锂(LBO)晶体以圆盘配置测量了二次谐波产生效率,证实了该过程与总晶体厚度呈非线性关系。已经对腔中二次谐波再循环期间的损耗进行了量化,并且已经通过光电二极管测量估计了二次谐波往返次数,以评估光学腔性能。考虑进一步的改进以增加光腔光子的积累。

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