Saved in:
Bibliographic Details
Main Authors: Liu, Dongxue, Dong, Jiaqin, Liu, Yunxing, He, Zhiyu, Wang, Wei, Gu, Yuqiu, Huang, Xiuguang, Zheng, Jian
Format: Preprint
Published: 2026
Subjects:
Online Access:https://arxiv.org/abs/2603.02007
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866915828705787904
author Liu, Dongxue
Dong, Jiaqin
Liu, Yunxing
He, Zhiyu
Wang, Wei
Gu, Yuqiu
Huang, Xiuguang
Zheng, Jian
author_facet Liu, Dongxue
Dong, Jiaqin
Liu, Yunxing
He, Zhiyu
Wang, Wei
Gu, Yuqiu
Huang, Xiuguang
Zheng, Jian
contents To quantify the sensitivity of diverse implosion designs to laser imprinting, we developed an equivalent perturbation model that maps laser imprinting as the target surface perturbation. By incorporating imperfections in target fabrication and thermal smoothing in the plasma, the model shows a reduced implosion sensitivity on laser imprinting, extending the analysis beyond geometric irradiation. The imprint sensitivity threshold is defined as $δh_{\rm las}/δh_{\rm tar}= 0.1$. When the imprinting amplitude $δh_{\rm las}$ is less than one-tenth of the target perturbation amplitude $δh_{\rm tar}$, target perturbations dominate. Radiation-hydrodynamics simulations confirm that when $δh_{\rm las}/δh_{\rm tar}\le 0.1$, variations in nonlinear onset time and entropy remain within 12\% of those observed with target perturbations alone. Moreover, the imprinting sensitivity is supported by OMEGA experiments. These results indicate that joint control of laser and target perturbations, improving target quality when $δh_{\rm las}/δh_{\rm tar}<0.1$ and laser smoothing otherwise, can support stable implosions for high-gain direct-drive inertial confinement fusion.
format Preprint
id arxiv_https___arxiv_org_abs_2603_02007
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle A theoretical model for quantifying the imprinting sensitivity of direct-drive inertial confinement fusion implosions
Liu, Dongxue
Dong, Jiaqin
Liu, Yunxing
He, Zhiyu
Wang, Wei
Gu, Yuqiu
Huang, Xiuguang
Zheng, Jian
Plasma Physics
To quantify the sensitivity of diverse implosion designs to laser imprinting, we developed an equivalent perturbation model that maps laser imprinting as the target surface perturbation. By incorporating imperfections in target fabrication and thermal smoothing in the plasma, the model shows a reduced implosion sensitivity on laser imprinting, extending the analysis beyond geometric irradiation. The imprint sensitivity threshold is defined as $δh_{\rm las}/δh_{\rm tar}= 0.1$. When the imprinting amplitude $δh_{\rm las}$ is less than one-tenth of the target perturbation amplitude $δh_{\rm tar}$, target perturbations dominate. Radiation-hydrodynamics simulations confirm that when $δh_{\rm las}/δh_{\rm tar}\le 0.1$, variations in nonlinear onset time and entropy remain within 12\% of those observed with target perturbations alone. Moreover, the imprinting sensitivity is supported by OMEGA experiments. These results indicate that joint control of laser and target perturbations, improving target quality when $δh_{\rm las}/δh_{\rm tar}<0.1$ and laser smoothing otherwise, can support stable implosions for high-gain direct-drive inertial confinement fusion.
title A theoretical model for quantifying the imprinting sensitivity of direct-drive inertial confinement fusion implosions
topic Plasma Physics
url https://arxiv.org/abs/2603.02007