collaborators

6 papers

physics.plasm-ph2026

Fusion-power amplification by compressive hydrodynamic fluctuations

Henry Fetsch, Nathaniel J. Fisch

Compressive fluctuations in hot plasma, including acoustic waves and compressible turbulence, increase the rate of fusion reactions. This power amplification comprises hydrodynamic…

physics.plasm-ph2026

Asymptotic behavior of the shear flow reactivity enhancement effect

Henry Fetsch, Nathaniel J. Fisch

Fusion reactivity is enhanced in the vicinity of strongly sheared flow due to the tendency of fast ions near the Gamow peak to travel long distances between collisions, thereby som…

physics.plasm-ph2026

Long-Pulse Fast Ignition in MagLIF

Benjamin Wang, Henry Fetsch, Nathaniel J. Fisch

The fast ignition paradigm for inertial confinement fusion (ICF) allows for extremely high gains but requires fuel to be heated very quickly to outpace hotspot disassembly and ener…

physics.plasm-ph2025

An ignition criterion for inertial fusion boosted by microturbulence

Henry Fetsch, Nathaniel J. Fisch

Turbulence enhances fusion reactivity, enabling ignition at lower temperature. A modified Lawson-like ignition criterion is derived for inertially confined plasmas harboring turbul…

physics.plasm-ph2025

Analytical models for the enhancement of fusion reactivity by turbulence

Henry Fetsch, Nathaniel J. Fisch

The reactivity of fusion plasma depends not only on its local density and temperature but also, through a recently identified kinetic effect, on the relative velocities of nearby f…

physics.plasm-ph2025

Enhancement to Fusion Reactivity in Sheared Flows

Henry Fetsch, Nathaniel J. Fisch

Sheared flow increases the reactivity of fusion plasma. In unmagnetized plasma with flow gradients comparable to the mean free path of reacting ions, fusion reactivity can be more…