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    Characterization of time-dependent x-ray drive at the center of a cylindrical hohlraum

    Xufei Xie1, Changshu Wu2,*, Lifei Hou1, Hongbo Cai2,3, Yaoyuan Liu1, Zanyang Guan1, Xiangming Liu1, Xiaoshi Peng1, Xiaoxi Duan1 et al.

    Huan Zhang1, Shenye Liu1, Dong Yang1, Yulong Li1, Sanwei Li1, Zhichao Li1, Qi Li1, Yonggang Liu1, Huabin Du1, Kuan Ren1, Fengjun Ge2, Weiming Yang1, Liang Guo1, Wanli Shang1, Xingsen Che1, Longfei Jing1, Huiyue Wei1, Yimeng Yang1, Ao Sun1, Ruizhen Yu1, Yunbao Huang4, Xiaohua Jiang1, Tao Xu1, Xiaoan He1, Chaoguang Li1, Yingjie Li1, Feng Wang1, Jiamin Yang1,†, Shiyang Zou2, Yongkun Ding2, Kai Du1, and Baohan Zhang1

    • *Contact author: cswu@iapcm.ac.cn
    • †Contact author: yjm70018@sina.cn

    Phys. Rev. E 113, 045202 – Published 1 April, 2026

    DOI: https://doi.org/10.1103/97rj-gpqq

    Abstract

    Detailed investigation of the x-ray drive on the capsule at the center of the hohlraum is crucial to solve the “drive deficit” problem in inertial confinement fusion. A pioneering work for probing the drive flux at the hohlraum center by simultaneously measuring the re-emitted flux and shock velocity was reported [X. Xie et al., Phys. Rev. Lett. 128, 075001 (2022)]. However, in the last experiment only two discrete shock velocity values can be obtained, as the streaked optical pyrometer was employed. In this work, we present characterization of the time-dependent x-ray drive on the capsule by simultaneously measuring the time-dependent localized re-emitted flux and the time-dependent shock velocity. The time-dependent localized re-emitted flux was measured by the space-resolving flux detector, while the time-dependent shock velocity was obtained with the velocity interferometer system for any reflector. Two-dimensional radiation hydrodynamic simulations revealed that the time history of the re-emitted flux as well as the shock velocity can be well reproduced. This technique presented a way for the determination of the x-ray drive at the center of the cylindrical hohlraum as well as other novel hohlraums.

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