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采用10拍瓦级激光器的量子电动力学级联。

QED cascade with 10 PW-class lasers.

作者信息

Jirka Martin, Klimo Ondrej, Vranic Marija, Weber Stefan, Korn Georg

机构信息

Institute of Physics of the CAS, ELI-Beamlines Project, Na Slovance 2, Prague, 182 21, Czech Republic.

Faculty of Nuclear Sciences and Physical Engineering, Czech Technical University in Prague, Brehova 7, Prague, 115 19, Czech Republic.

出版信息

Sci Rep. 2017 Nov 10;7(1):15302. doi: 10.1038/s41598-017-15747-1.

Abstract

The intensities of the order of 10 W/cm are required to efficiently generate electron-positron pairs in laser-matter interaction when multiple laser beam collision is employed. To achieve such intense laser fields with the upcoming generation of 10 PW laser beams, focusing to sub-micron spot size is required. In this paper, the possibility of pair production cascade development is studied for the case of a standing wave created by two tightly focused colliding laser pulses. Even though the stronger ponderomotive force expels the seed particles from the interaction volume when a tightly focused laser beam is used, tight focusing allows to achieve cascade pair production due to the higher intensity in the focal spot. Optimizing the target density can compensate the expulsion by the ponderomotive force and lower the threshold power required for cascade pair production. This will in principle allow to produce pairs with 10 PW-class laser facilities which are now under construction and will become accessible soon.

摘要

当采用多束激光束碰撞时,在激光与物质相互作用中高效产生电子 - 正电子对需要强度达到10 W/cm量级。为了利用即将问世的10 PW激光束实现如此强的激光场,需要将其聚焦到亚微米光斑尺寸。在本文中,研究了由两个紧密聚焦的碰撞激光脉冲产生的驻波情况下级联对产生的可能性。尽管当使用紧密聚焦的激光束时,较强的有质动力会将种子粒子从相互作用区域中排出,但紧密聚焦由于焦斑处强度较高而能够实现级联对产生。优化靶密度可以补偿有质动力的排出作用,并降低级联对产生所需的阈值功率。这原则上将允许利用目前正在建设且即将投入使用的10 PW级激光设施产生粒子对。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8fc6/5681631/6016322a1091/41598_2017_15747_Fig1_HTML.jpg

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