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1.
Rev Sci Instrum ; 92(9): 093508, 2021 Sep 01.
Article in English | MEDLINE | ID: mdl-34598532

ABSTRACT

In this paper, we report on a crystal based x-ray imaging system fielded at the OMEGA EP laser facility. This new system has a pointing accuracy of +/100 µm, a temporal resolution down to 100 ps (depending on backlighter characteristics), variable magnification, and a spatial resolution of 21.9 µm at the object plane at a magnification of 15×. The system is designed to use a crystal along the crystal plane that satisfies the Bragg condition for the x ray of interest. The thin crystal is then bent into a spherical geometry and attached to a glass backing substrate to hold it in the diagnostic, and the x rays are imaged onto a charge coupled device. We report on data acquired with the new Los Alamos National Laboratory supplied spherical quartz crystal to image the Mn He-α 6.15 keV line emission.

2.
Phys Rev E ; 102(4-1): 043212, 2020 Oct.
Article in English | MEDLINE | ID: mdl-33212701

ABSTRACT

In this work, we present results from experiments capable of producing and measuring the propagation of multiple successive, copropagating shocks across an unstable planar interface, where the shocks are independently driven and separately controllable, enabling the study of this important phenomenon. Copropagating shocks play a significant role in a wide range of systems involving stratified media subject to a shock, and exhibit different physical characteristics compared to counterpropagating shocks. Existing techniques, however, preclude copropagating shocks, so experiments to date have been limited to the study of counterpropagating shocks. We address this previous limitation and open a physical parameter space for study using a new hohlraum platform on the National Ignition Facility. Initial experimental results are presented together with comparisons from numerical simulations.

3.
Phys Rev E ; 95(2-1): 023202, 2017 Feb.
Article in English | MEDLINE | ID: mdl-28297959

ABSTRACT

We report an experimental and computational study investigating the effects of laser preheat on the hydrodynamic behavior of a material layer. In particular, we find that perturbation of the surface of the layer results in a complex interaction, in which the bulk of the layer develops density, pressure, and temperature structure and in which the surface experiences instability-like behavior, including mode coupling. A uniform one-temperature preheat model is used to reproduce the experimentally observed behavior, and we find that this model can be used to capture the evolution of the layer, while also providing evidence of complexities in the preheat behavior. This result has important consequences for inertially confined fusion plasmas, which can be difficult to diagnose in detail, as well as for laser hydrodynamics experiments, which generally depend on assumptions about initial conditions in order to interpret their results.

4.
Article in English | MEDLINE | ID: mdl-31093029

ABSTRACT

Experiments were performed at the LLNL Titan laser to measure the propagation direction of the energetic electrons that were generated during the interaction of the polarized laser beam with solid targets in the case of normal incidence. The energetic electrons propagated through vacuum to spectator metal wires in the polarization direction and in the perpendicular direction, and the K shell spectra from the different wire materials were recorded as functions of the distance from the laser focal spot. It was found that the fluence of the energetic electrons driven into the spectator wires in the polarization direction compared to the perpendicular direction was larger and increased with the distance from the focal spot. This indicates that energetic electrons are preferentially driven in the direction of the intense oscillating electric field of the incident laser beam in agreement with the multiphoton inverse Bremsstrahlung absorption process.

5.
Phys Rev Lett ; 115(14): 145001, 2015 Oct 02.
Article in English | MEDLINE | ID: mdl-26551815

ABSTRACT

We report the first observation, in a supersonic flow, of the evolution of the Kelvin-Helmholtz instability from a single-mode initial condition. To obtain these data, we used a novel experimental system to produce a steady shock wave of unprecedented duration in a laser-driven experiment. The shocked, flowing material creates a shear layer between two plasmas at high energy density. We measured the resulting interface structure using radiography. Hydrodynamic simulations reproduce the large-scale structures very well and the medium-scale structures fairly well, and imply that we observed the expected reduction in growth rate for supersonic shear flow.

6.
Rev Sci Instrum ; 85(11): 11D618, 2014 Nov.
Article in English | MEDLINE | ID: mdl-25430194

ABSTRACT

A high resolution crystal spectrometer utilizing a crystal in transmission geometry has been developed and experimentally optimized to measure the widths of emission lines in the 10-60 keV energy range with eV accuracy. The spectrometer achieves high spectral resolution by utilizing crystal planes with small lattice spacings (down to 2d = 0.099 nm), a large crystal bending radius and Rowland circle diameter (965 mm), and an image plate detector with high spatial resolution (60 µm in the case of the Fuji TR image plate). High resolution W L-shell and K-shell laboratory test spectra in the 10-60 keV range and Ho K-shell spectra near 47 keV recorded at the LLNL Titan laser facility are presented. The Ho K-shell spectra are the highest resolution hard x-ray spectra recorded from a solid target irradiated by a high-intensity laser.

7.
Phys Rev Lett ; 109(15): 155004, 2012 Oct 12.
Article in English | MEDLINE | ID: mdl-23102319

ABSTRACT

Following the successful demonstration of an OMEGA laser-driven platform for generating and studying nearly two-dimensional unstable plasma shear layers [Hurricane et al., Phys. Plasmas 16, 056305 (2009); Harding et al., Phys. Rev. Lett. 103, 045005 (2009)], this Letter reports on the first quantitative measurement of turbulent mixing in a high-energy-density plasma. As a blast wave moves parallel to an unperturbed interface between a low-density foam and a high-density plastic, baroclinic vorticity is deposited at the interface and a Kelvin-Helmholtz instability-driven turbulent mixing layer is created in the postshock flow due to surface roughness. The spatial scale and density profile of the turbulent layer are diagnosed using x-ray radiography with sufficiently small uncertainty so that the data can be used to ~0.17 µm) in the postshock plasma flow are consistent with an "inertial subrange," within which a Kolmogorov turbulent energy cascade can be active. An illustration of comparing the data set with the predictions of a two-equation turbulence model in the ares radiation hydrodynamics code is also presented.

8.
Clin Rheumatol ; 13(2): 299-304, 1994 Jun.
Article in English | MEDLINE | ID: mdl-8088078

ABSTRACT

Among the idiopathic forms of osteoporosis, the one developing during pregnancy is the least common and scarcely studied. Poorly understood, it seems to stem from transient failure of calcitropic hormones and decreased osteoblast activity. A 25-year-old patient presented with coxofemoral pain during the last three months of pregnancy, followed by multiple vertebral compression fractures at postpartum. Laboratory, radiological, densitometric and histological examinations led to a diagnosis of idiopathic osteoporosis in pregnancy, once other causes of osteopenia had been ruled out. Bone densitometries performed 12 and 24 months later showed an increase in mineral density, thus demonstrating the self-limited nature of this entity.


Subject(s)
Osteoporosis , Pregnancy Complications , Absorptiometry, Photon , Adult , Biopsy , Bone Density , Bone and Bones/pathology , Female , Humans , Osteoporosis/diagnostic imaging , Osteoporosis/metabolism , Osteoporosis/pathology , Pregnancy
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