Octahedral spherical hohlraum and its laser arrangement for inertial fusion

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Abstract

A recent publication [K. Lan et al., Phys. Plasmas 21, 010704 (2014)] proposed a spherical hohlraum with six laser entrance holes of octahedral symmetry at a specific hohlraum-to-capsule radius ratio of 5.14 for inertial fusion study, which has robust high symmetry during the capsule implosion and superiority on low backscatter without supplementary technology. This paper extends the previous one by studying the laser arrangement and constraints of octahedral hohlraum in detail. As a result, it has serious beam crossing at θ L≤ 45°, and θ L=50° to 60° is proposed as the optimum candidate range for the golden octahedral hohlraum, here θ L is the opening angle that the laser quad beam makes with the Laser Entrance Hole (LEH) normal direction. In addition, the design of the LEH azimuthal angle should avoid laser spot overlapping on hohlraum wall and laser beam transferring outside hohlraum from a neighbor LEH. The octahedral hohlraums are flexible and can be applicable to diverse inertial fusion drive approaches. This paper also applies the octahedral hohlraum to the recent proposed hybrid indirect-direct drive approach. © 2014 AIP Publishing LLC.

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Lan, K., He, X. T., Liu, J., Zheng, W., & Lai, D. (2014). Octahedral spherical hohlraum and its laser arrangement for inertial fusion. Physics of Plasmas, 21(5). https://doi.org/10.1063/1.4878835

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