In a NIF implosion hydrodynamic instabilities may cause cold material from the imploding shell to be injected into the hot-spot (hot-spot mix), enhancing the radiative and conductive losses, which in turn may lead to a quenching of the ignition process. The bound-bound features of the spectrum emitted by high-Z ablator dopants that get mixed into the hot-spot have been previously used to infer the total amount of mixed mass; however, the typical errorbars are larger than the maximum tolerable mix. We present here an improved 2D model for mix spectroscopy which can be used to retrieve information on both the amount of mixed mass and on the full imploded plasma profile. By performing radiation transfer, and simultaneously fitting all of the f...
The low-mode shell asymmetry and high-mode hot spot mixing appear to be the main reasons for the per...
Indirectly-driven double-shell implosions are being investigated as a possible noncryogenic path to ...
One of the most important challenges confronting laser-driven capsule implosion experiments will be ...
In a NIF implosion hydrodynamic instabilities may cause cold material from the imploding shell to be...
In a NIF implosion hydrodynamic instabilities may cause cold material from the imploding shell to be...
In a National Ignition Facility implosion, hydrodynamic instabilities may cause the cold material fr...
Accurately assessing and optimizing the implosion performance of inertial confinement fusion capsule...
Mixing of plastic ablator material, doped with Cu and Ge dopants, deep into the hot spot of ignition...
We have derived a 3-dimensional synthetic model for NIF implosion conditions, by predicting and opti...
We have derived a 3-dimensional synthetic model for NIF implosion conditions, by predicting and opti...
The mixing between fuel and shell materials in Inertial Confinement Fusion (ICF) implosion cores is ...
The mixing between fuel and shell materials in Inertial Confinement Fusion (lCF) implosion cores is ...
K-shell emission spectroscopy is commonly used to diagnose the core temperature and density of ICF i...
Charged-particle spectroscopy is used to assess implosion symmetry in ignition-scale indirect-drive ...
We present 3D radiation-hydrodynamics simulations of indirect-drive inertial confinement fusion expe...
The low-mode shell asymmetry and high-mode hot spot mixing appear to be the main reasons for the per...
Indirectly-driven double-shell implosions are being investigated as a possible noncryogenic path to ...
One of the most important challenges confronting laser-driven capsule implosion experiments will be ...
In a NIF implosion hydrodynamic instabilities may cause cold material from the imploding shell to be...
In a NIF implosion hydrodynamic instabilities may cause cold material from the imploding shell to be...
In a National Ignition Facility implosion, hydrodynamic instabilities may cause the cold material fr...
Accurately assessing and optimizing the implosion performance of inertial confinement fusion capsule...
Mixing of plastic ablator material, doped with Cu and Ge dopants, deep into the hot spot of ignition...
We have derived a 3-dimensional synthetic model for NIF implosion conditions, by predicting and opti...
We have derived a 3-dimensional synthetic model for NIF implosion conditions, by predicting and opti...
The mixing between fuel and shell materials in Inertial Confinement Fusion (ICF) implosion cores is ...
The mixing between fuel and shell materials in Inertial Confinement Fusion (lCF) implosion cores is ...
K-shell emission spectroscopy is commonly used to diagnose the core temperature and density of ICF i...
Charged-particle spectroscopy is used to assess implosion symmetry in ignition-scale indirect-drive ...
We present 3D radiation-hydrodynamics simulations of indirect-drive inertial confinement fusion expe...
The low-mode shell asymmetry and high-mode hot spot mixing appear to be the main reasons for the per...
Indirectly-driven double-shell implosions are being investigated as a possible noncryogenic path to ...
One of the most important challenges confronting laser-driven capsule implosion experiments will be ...