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370 results on '"Robey, H."'

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1. The impact of low-mode symmetry on inertial fusion energy output in the burning plasma state

2. Evidence for suprathermal ion distribution in burning plasmas

3. Design of inertial fusion implosions reaching the burning plasma regime

4. Burning plasma achieved in inertial fusion

5. Development of improved higher-order correction for the NIF opacity spectrometer.

6. Demonstration of low-mode shape control in indirect-drive double shell implosions at the NIF.

7. Design of experiments to spectroscopically characterize radiation flow in stochastic media.

8. Optimization of the gamma reaction history diagnostic for double-shell pusher areal density and reaction history measurements on the National Ignition Facility.

9. Publisher Correction: Burning plasma achieved in inertial fusion

10. A direct-drive exploding-pusher implosion as the first step in development of a monoenergetic charged-particle backlighting platform at the National Ignition Facility

11. Same-sided successive-shock HED instability experiments.

13. 2nd and 3rd order spectral energy corrections with penumbral de-blurring methodology for opacity platform used on the National Ignition Facility.

15. Astrophysically relevant radiation hydrodynamics experiment at the National Ignition Facility

17. High spatial resolution and contrast radiography of hydrodynamic instabilities at the National Ignition Facility.

18. Mechanisms of shape transfer and preheating in indirect-drive double shell collisions.

19. The first target experiments on the National Ignition Facility

24. A polar direct drive liquid deuterium–tritium wetted foam target concept for inertial confinement fusion.

26. NIF capsule performance modeling

27. Progress of LMJ-relevant implosions experiments on OMEGA

28. Towards an integrated model of the NIC layered implosions

30. Fuel convergence sensitivity in indirect drive implosions.

31. Use of computer vision for analysis of image datasets from high temperature plasma experiments.

32. Constraining computational modeling of indirect drive double shell capsule implosions using experiments.

33. Radiation driven Hohlraum using 2ω for ICF implosions at the NIF.

34. A simple model to scope out parameter space for indirect drive designs on NIF.

35. Three-dimensional modeling and hydrodynamic scaling of National Ignition Facility implosions.

36. Flow conditioning for improved optical propagation of beams through regions bounded by surfaces of high solidity.

37. Implementation of the foil-on-hohlraum technique for the magnetic recoil spectrometer for time-resolved neutron measurements at the National Ignition Facility.

38. Design considerations for indirectly driven double shell capsules.

39. Development of new platforms for hydrodynamic instability and asymmetry measurements in deceleration phase of indirectly driven implosions on NIF.

40. Hydrodynamic instabilities seeded by the X-ray shadow of ICF capsule fill-tubes.

41. Review of hydro-instability experiments with alternate capsule supports in indirect-drive implosions on the National Ignition Facility.

42. Mitigation of X-ray shadow seeding of hydrodynamic instabilities on inertial confinement fusion capsules using a reduced diameter fuel fill-tube.

43. Visualizing deceleration-phase instabilities in inertial confinement fusion implosions using an “enhanced self-emission” technique at the National Ignition Facility.

44. Ablative stabilization of Rayleigh-Taylor instabilities resulting from a laser-driven radiative shock.

45. How high energy fluxes may affect Rayleigh--Taylor instability growth in young supernova remnants.

46. Hydro-instability growth of perturbation seeds from alternate capsule-support strategies in indirect-drive implosions on National Ignition Facility.

47. Improving ICF implosion performance with alternative capsule supports.

48. Hydrodynamic instability growth of three-dimensional modulations in radiation-driven implosions with "low-foot" and "high-foot" drives at the National Ignition Facility.

50. Experimental results of radiation-driven, layered deuterium-tritium implosions with adiabat-shaped drives at the National Ignition Facility.

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