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137 results on '"Sio, H."'

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1. Measurements of K-edge and L-edge extended x-ray absorption fine structure at the national ignition facility (invited).

2. Design and modeling of indirectly driven magnetized implosions on the NIF.

3. High-yield implosion modeling using the Frustraum: Assessing and controlling the formation of polar jets and enhancing implosion performance with applied magnetization.

4. Performance scaling with an applied magnetic field in indirect-drive inertial confinement fusion implosions.

5. Determining spectral response of the National Ignition Facility particle time of flight diagnostic to x rays.

6. A new class of variable-radii diffraction optics for high-resolution x-ray spectroscopy at the National Ignition Facility (invited).

7. The phase-2 particle x-ray temporal diagnostic for simultaneous measurement of multiple x-ray and nuclear emission histories from OMEGA implosions (invited).

8. Fuel–shell mix and yield degradation in kinetic shock-driven inertial confinement fusion implosions.

9. Magnetized ICF implosions: Scaling of temperature and yield enhancement.

10. Quantifying carrier recombination at grain boundaries in multicrystalline silicon wafers through photoluminescence imaging.

11. Techniques for studying materials under extreme states of high energy density compression.

12. The multi-optics high-resolution absorption x-ray spectrometer (HiRAXS) for studies of materials under extreme conditions.

13. Diagnosing plasma magnetization in inertial confinement fusion implosions using secondary deuterium-tritium reactions.

14. Yield degradation due to laser drive asymmetry in D3He backlit proton radiography experiments at OMEGA.

15. An x-ray penumbral imager for measurements of electron–temperature profiles in inertial confinement fusion implosions at OMEGA.

16. A second order yield-temperature relation for accurate inference of burn-averaged quantities in multi-species plasmas.

17. A multi-channel x-ray temporal diagnostic for measurement of time-resolved electron temperature in cryogenic deuterium–tritium implosions at OMEGA.

18. Optimized continuum x-ray emission from laser-generated plasma.

19. Transient magnetic field diffusion considerations relevant to magnetically assisted indirect drive inertial confinement fusion.

20. Saturn-ring proton backlighters for the National Ignition Facility.

22. Probing ion species separation and ion thermal decoupling in shock-driven implosions using multiple nuclear reaction histories.

23. Progress on observations of interspecies ion separation in inertial-confinement-fusion implosions via imaging x-ray spectroscopy.

24. Numerical simulation of magnetized jet creation using a hollow ring of laser beams.

25. Kinetic effects on neutron generation in moderately collisional interpenetrating plasma flows.

26. Studies of ion kinetic effects in OMEGA shock-driven implosions using fusion burn images

27. Implosion shape control of high-velocity, large case-to-capsule ratio beryllium ablators at the National Ignition Facility.

28. Study of self-generated fields in strongly-shocked, low-density systems using broadband proton radiography.

29. Magnetic field production via the Weibel instability in interpenetrating plasma flows.

30. A broadband proton backlighting platform to probe shock propagation in low-density systems.

31. Carrier de-smearing of photoluminescence images on silicon wafers using the continuity equation

32. Imaging crystal orientations in multicrystalline silicon wafers via photoluminescence

33. A Particle X-ray Temporal Diagnostic (PXTD) for studies of kinetic, multi-ion effects, and ion-electron equilibration rates in Inertial Confinement Fusion plasmas at OMEGA (invited).

34. Development of a krypton-doped gas symmetry capsule platform for x-ray spectroscopy of implosion cores on the NIF.

35. A novel method to recover DD fusion proton CR-39 data corrupted by fast ablator ions at OMEGA and the National Ignition Facility.

36. Symmetry control in subscale near-vacuum hohlraums.

37. Polar-direct-drive experiments with contoured-shell targets on OMEGA.

38. Impact of x-ray dose on track formation and data analysis for CR-39-based proton diagnostics.

39. Differential heating: A versatile method for thermal conductivity measurements in high-energy-density matter.

40. Assessment of ion kinetic effects in shock-driven inertial confinement fusion implosions using fusion burn imaging.

41. Impact of x-ray dose on the response of CR-39 to 1-5.5 MeV alphas.

42. Investigation of ion kinetic effects in direct-drive exploding-pusher implosions at the NIF.

43. A magnetic particle time-of-flight (MagPTOF) diagnostic for measurements of shock- and compression-bang time at the NIF (invited).

44. A compact proton spectrometer for measurement of the absolute DD proton spectrum from which yield and ρR are determined in thin-shell inertial-confinement-fusion implosions.

45. A compact neutron spectrometer for characterizing inertial confinement fusion implosions at OMEGA and the NIF.

46. Kinetic mix mechanisms in shock-driven inertial confinement fusion implosions.

47. Species separation and kinetic effects in collisional plasma shocks.

48. Empirical assessment of the detection efficiency of CR-39 at high proton fluence and a compact, proton detector for high-fluence applications.

49. Sensitivity of chemical vapor deposition diamonds to DD and DT neutrons at OMEGA and the National Ignition Facility.

50. Note: A monoenergetic proton backlighter for the National Ignition Facility.

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