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Updated: Aug 6, 2026

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Published on: January 18, 2021
Performance enhancement of direct-drive shock-augmented ignition inertial fusion implosions through shock timing
M Khan1,2, K Churnetski3, D E M Barlow4,5
1Central Laser Facility, STFC Rutherford Appleton Laboratory, Harwell Campus, United Kingdom.
None:
Shock-augmented ignition (SAI) [R. H. H. Scott et al., Phys. Rev. Lett. 129, 195001 (2022)0031-900710.1103/PhysRevLett.129.195001] is an alternative inertial confinement fusion concept that is designed to achieve high energy gain by combining improved resilience to instabilities with enhanced fuel compression. In SAI, lower implosion velocities can improve hydrodynamic stability and limited laser intensities reduce the excitation of detrimental laser-plasma instabilities, enabling greater areal density accumulation. Here we report an experimental investigation of SAI using a series of warm D_{2} implosions. By timing the augmenting shock to arrive at the implosion center immediately prior to peak compression, the areal density and hot-spot pressure increase by 50% and 112%, respectively, relative to unoptimized designs. Ignition-scale simulations reproduce the observed timing dependence and demonstrate the potential of SAI for inertial fusion energy.
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