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Fast focal zooming scheme for direct drive fusion implemented by inserting KD2PO4 crystal

机译:通过插入KD2PO4晶体实现直接驱动融合的快速聚焦变焦方案

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摘要

The highly required uniformity of target in direct-drive fusion is difficult to achieve and maintain during the entire laser fusion implosion. To mitigate the increasing nonuniformity, the fast focal zooming scheme implemented by inserting an electro-optic (EO) crystal in the front end of beamline has been proposed. Functioning as a phase plate, the specifically designed EO crystal may add the induced spherical wavefront to the laser beam and alter its focusing characteristics. However, in order to zoom out the focal spot by half, the required voltage for KD2PO4 (DKDP) with single pair of electrodes is relatively high. In order to decrease the voltage while maintaining the zooming performance, the DKDP cylinder with multi pairs of electrodes has been presented. The continuous phase plate (CPP) is designed according to both the injected beam and the output field. However, the conventional CPP is designed based on the assumption of an injected beam without wavefront distortion, which would zoom in the focal spot variation in the focal zooming scheme. In order to zoom out the focal spot, a redesigned CPP has been proposed by adding a spherical wavefront to the phase variation of the conventional CPP and further optimizing. On the basis, the focusing characteristics of laser beam during the fast focal zooming process have been analyzed. Results indicate that the focal spot size decreases with the increasing voltage on DKDP crystal, meanwhile the uniformity maintains high during the focal zooming process. (C) 2016 Published by Elsevier B.V.
机译:在整个激光聚变内爆过程中,很难实现和维持直接驱动聚变中高度要求的靶标均匀性。为了减轻日益增加的不均匀性,已经提出了通过在光束线的前端插入电光(EO)晶体来实现的快速聚焦变焦方案。专门设计的EO晶体用作相位板,可以将感应的球面波前添加到激光束中,并改变其聚焦特性。但是,为了将焦点缩小一半,带有一对电极的KD2PO4(DKDP)所需的电压相对较高。为了在保持缩放性能的同时降低电压,已经提出了具有多对电极的DKDP圆柱体。连续相板(CPP)根据注入的光束和输出场进行设计。然而,常规的CPP是基于假设注入的光束没有波前畸变而设计的,该假设会在焦点变焦方案中放大焦点变化。为了缩小焦点,已经提出了一种重新设计的CPP,其通过将球面波前添加到常规CPP的相位变化中并进一步优化来实现。在此基础上,分析了快速聚焦变焦过程中激光束的聚焦特性。结果表明,焦斑尺寸随DKDP晶体上电压的增加而减小,同时在焦距变焦过程中保持较高的均匀性。 (C)2016由Elsevier B.V.发布

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