Area of research
Nuclear and High Energy Physics · Mechanics of Materials
Research interest
Research interests include Physics, Inertial confinement fusion, National Ignition Facility, Plasma, Implosion, and Ignition system.
On-shot detection of fission isotopes of 238U, produced by laser-driven x-rays
Observations and properties of the first laboratory fusion experiment to exceed a target gain of unity
The impact of low-mode symmetry on inertial fusion energy output in the burning plasma state
Diagnosing the origin and impact of low-mode asymmetries in ignition experiments at the National Ignition Facility
Measuring stopping power in warm dense matter plasmas at OMEGA
Burning plasma achieved in inertial fusion
Design of inertial fusion implosions reaching the burning plasma regime
Experimental achievement and signatures of ignition at the National Ignition Facility
Design of an inertial fusion experiment exceeding the Lawson criterion for ignition
Evidence for suprathermal ion distribution in burning plasmas
Strong suppression of heat conduction in a laboratory replica of galaxy-cluster turbulent plasmas
First on-line detection of radioactive fission isotopes produced by laser-accelerated protons
Progress of indirect drive inertial confinement fusion in the United States
Experimental Validation of Low-<mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" display="inline"><mml:mi>Z</mml:mi></mml:math> Ion-Stopping Formalisms around the Bragg Peak in High-Energy-Density Plasmas
Transition from Collisional to Collisionless Regimes in Interpenetrating Plasma Flows on the National Ignition Facility
Scaled laboratory experiments explain the kink behaviour of the Crab Nebula jet
The near vacuum hohlraum campaign at the NIF: A new approach
Observation of magnetic field generation via the Weibel instability in interpenetrating plasma flows
Measurement of Charged-Particle Stopping in Warm Dense Plasma
Ion Thermal Decoupling and Species Separation in Shock-Driven Implosions
Measurements of Ion Stopping Around the Bragg Peak in High-Energy-Density Plasmas
Collisionless shock experiments with lasers and observation of Weibel instabilities
High-density carbon ablator experiments on the National Ignition Facility
Exploration of the Transition from the Hydrodynamiclike to the Strongly Kinetic Regime in Shock-Driven Implosions
Observation of a Reflected Shock in an Indirectly Driven Spherical Implosion at the National Ignition Facility
First Observations of Nonhydrodynamic Mix at the Fuel-Shell Interface in Shock-Driven Inertial Confinement Implosions
Implosion dynamics measurements at the National Ignition Facility
Using high-intensity laser-generated energetic protons to radiograph directly driven implosions