A comprehensive set of dual nuclear product observations provides a snapshot of imploding inertial confinement fusion capsules at the time of shock collapse, shortly before the final stages of compression. The collapse of strong convergent shocks at the center of spherical capsules filled with D[subscript 2] and [subscript 3]He gases induces D-D and D-[superscript 3]He nuclear production. Temporal and spectral diagnostics of products from both reactions are used to measure shock timing, temperature, and capsule areal density. The density and temperature inferred from these measurements are used to estimate the electron-ion thermal coupling and demonstrate a lower electron-ion relaxation rate for capsules with lower initial gas density.New Y...
This paper describes the development of a platform to study astrophysically relevant nuclear reactio...
Anomalous reduction of the fusion yields by 50% and anomalous scaling of the burn-averaged ion tempe...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2015.This electronic v...
Fuel-ion species dynamics in hydrodynamiclike shock-driven DT³He-filled inertial confinement fusion ...
A series of thin glass-shell shock-driven DT gas-filled capsule implosions was conducted at the OME...
Spherically expanding radiative shock waves have been observed from inertially confined implosion ex...
Spherically expanding radiative shock waves have been observed from inertially confined implosion ex...
Fuel-ion species dynamics in hydrodynamiclike shock-driven DT3He-filled inertial confinement fusion ...
Simultaneously measured DD, DT, and (DHe)-He-3 reaction histories are used to probe the impacts of m...
The effects of shock dynamics on compressibility of indirect-drive ignition-scale surrogate implosio...
The effects of shock dynamics on compressibility of indirect-drive ignition-scale surrogate implosio...
In inertial confinement fusion (ICF), a spherical capsule is imploded using multiple laser beams to ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2015.Cataloged from PD...
In inertial confinement fusion (ICF) implosions, one of the most important parameters for quantifyin...
The correlation between proton production rate and discharged current in D-3He spherical inertial el...
This paper describes the development of a platform to study astrophysically relevant nuclear reactio...
Anomalous reduction of the fusion yields by 50% and anomalous scaling of the burn-averaged ion tempe...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2015.This electronic v...
Fuel-ion species dynamics in hydrodynamiclike shock-driven DT³He-filled inertial confinement fusion ...
A series of thin glass-shell shock-driven DT gas-filled capsule implosions was conducted at the OME...
Spherically expanding radiative shock waves have been observed from inertially confined implosion ex...
Spherically expanding radiative shock waves have been observed from inertially confined implosion ex...
Fuel-ion species dynamics in hydrodynamiclike shock-driven DT3He-filled inertial confinement fusion ...
Simultaneously measured DD, DT, and (DHe)-He-3 reaction histories are used to probe the impacts of m...
The effects of shock dynamics on compressibility of indirect-drive ignition-scale surrogate implosio...
The effects of shock dynamics on compressibility of indirect-drive ignition-scale surrogate implosio...
In inertial confinement fusion (ICF), a spherical capsule is imploded using multiple laser beams to ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2015.Cataloged from PD...
In inertial confinement fusion (ICF) implosions, one of the most important parameters for quantifyin...
The correlation between proton production rate and discharged current in D-3He spherical inertial el...
This paper describes the development of a platform to study astrophysically relevant nuclear reactio...
Anomalous reduction of the fusion yields by 50% and anomalous scaling of the burn-averaged ion tempe...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2015.This electronic v...