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1.
Opt Express ; 30(15): 26315-26323, 2022 Jul 18.
Artigo em Inglês | MEDLINE | ID: mdl-36236826

RESUMO

Structured intense laser beams offer degrees of freedom that are highly attractive for high-field science applications. However, the performance of high-power laser beams in these applications is often hindered by deviations from the desired spatiotemporal profile. This study reports the wavefront optimization of ultrafast Laguerre-Gaussian beams through the synergy of adaptive optics and genetic algorithm-guided feedback. The results indicate that the intensity fluctuations along the perimeter of the target ring-shaped profile can be reduced up to ∼15%. Furthermore, the radius of the ring beam profile can be tailored to a certain extent by establishing threshold fitting criteria. The versatility of this approach is experimentally demonstrated in conjunction with different focusing geometries.

2.
Opt Express ; 29(21): 33481-33490, 2021 Oct 11.
Artigo em Inglês | MEDLINE | ID: mdl-34809159

RESUMO

We demonstrate a novel single-shot method to determine the detonation energy of laser-induced plasma and investigate its performance. This approach can be used in cases where there are significant shot-to-shot variations in ablation conditions, such as laser fluctuations, target inhomogeneity, or multiple filamentation with ultrashort pulses. The Sedov blast model is used to fit two time-delayed shadowgrams measured with a double-pulse laser. We find that the reconstruction of detonation parameters is insensitive to the choice of interpulse delay in double-pulse shadowgraphy. In contrast, the initial assumption of expansion dimensionality has a large impact on the reconstructed detonation energy. The method allows for a reduction in the uncertainties of blast wave energy measurements as a diagnostic technique employed in various laser ablation applications.

3.
Opt Express ; 26(22): 29110-29122, 2018 Oct 29.
Artigo em Inglês | MEDLINE | ID: mdl-30470078

RESUMO

We perform optical emission spectroscopy of ultrafast laser filament-produced air plasmas in the multiple filament regime at driving wavelengths of 400 nm and 800 nm. The spatiotemporal structure of the emission from the plasmas are observed and the emission spectra are used to estimate plasma temperature and density for a range of laser parameters. Plasma temperatures are determined from the molecular nitrogen fluorescence, while the electron densities are estimated from Stark broadening of the oxygen-I 777.19-nm line. Electron temperatures are determined to be in the range of 5000-5200 K and they do not vary significantly along the length of the filament, nor are they sensitive to incident laser energy or wavelength. Electron densities are on order of 1016 cm-3 and show a greater variation with axial position, laser energy, and laser wavelength. We discuss mechanisms responsible for spatial localization of emitting species within the filament. Optical emission spectroscopy offers a simple, non-perturbing method to measure filament properties, that allows the information on the associated molecular transitions and excitation/ionization mechanisms to be extracted.

4.
Sci Rep ; 8(1): 11629, 2018 Aug 02.
Artigo em Inglês | MEDLINE | ID: mdl-30072758

RESUMO

Uranyl fluoride (UO2F2) is a compound which forms in the reaction between water and uranium hexafluoride, a uranium containing gas widely used for uranium enrichment. Uranyl fluoride exhibits negligible natural background in atmosphere; as a result, its observation implies the presence and active operation of nearby enrichment facilities and could be used as a tracer for treaty verification technologies. Additionally, detection of UO2F2 has a potential application in guiding remediation efforts around enrichment facilities. Laser-induced fluorescence (LIF) has been proposed in the past as a viable technique for the detection and tracking of UO2F2. We demonstrate that ultrafast laser filamentation coupled with LIF extends the capabilities of standard LIF to enable remote detection of UO2F2. An intense femtosecond laser pulse propagated in air collapses into a plasma channel, referred to as a laser filament, allowing for the extended delivery of laser energy. We first investigate the luminescence of UO2F2 excited by the second harmonic of an ultrafast Ti:sapphire laser and subsequently excite it using the conical emission that accompanies ultrafast laser filamentation in air. We measure the decay rates spanning 4.3-5.6 × 104 s-1 and discuss the characteristics of the luminescence for both ultrafast- and filament-excitation. Larger decay rates than those observed using standard LIF are caused by a saturated component of prompt decay from annihilation of dense excited states upon excitation with an ultrafast source. The reproducibility of such decay rates for the given range of incident laser intensities 1.0-1.6 × 1011 W cm-2 is promising for the application of this technique in remote sensing.

5.
Acta Biomater ; 48: 289-299, 2017 01 15.
Artigo em Inglês | MEDLINE | ID: mdl-27836805

RESUMO

A large fraction of the volume of Beluga whale (Delphinapterus leucas) teeth consists of cementum, a mineralized tissue which grows throughout the life of the animal and to which the periodontal ligaments attach. Annular growth bands or growth layer groups (GLGs) form within Beluga cementum, and this study investigates GLG structure using X-ray fluorescence mapping and X-ray diffraction mapping with microbeams of synchrotron radiation. The Ca and Zn fluorescent intensities and carbonated hydroxyapatite (cAp) diffracted intensities rise and fall together and match the light-dark bands visible in transmitted light micrographs. Within the bands of maximum Ca and Zn intensity, the ratio of Zn to Ca is slightly higher than in the minima bands. Further, the GLG cAp, Ca and Zn modulation is preserved throughout the cementum for durations >25year. STATEMENT OF SIGNIFICANCE: Cementum is an important tooth tissue to which the periodontal ligaments attach and consists primarily of carbonated apatite mineral and collagen. In optical microscopy of cementum thin sections, light/dark bands are formed annually, and age at death is determined by counting these bands. We employ synchrotron X-ray diffraction and X-ray fluorescence mapping to show the bands in Beluga whale cementum result from differences in mineral content and not from differences in collagen orientation as was concluded by others. Variation in Zn fluorescent intensity was found to be very sensitive indicator of changing biomineralization and suggest that Zn plays an important role this process.


Assuntos
Beluga/anatomia & histologia , Cemento Dentário/anatomia & histologia , Dente/anatomia & histologia , Animais , Cemento Dentário/diagnóstico por imagem , Mandíbula/anatomia & histologia , Dente/diagnóstico por imagem , Difração de Raios X
6.
Sex Transm Dis ; 17(2): 95-8, 1990.
Artigo em Inglês | MEDLINE | ID: mdl-2360134

RESUMO

The authors analyzed four hundred fifty-six cases of syphilis reported via a passive disease surveillance system in the Navy and Marine Corps during 1985-1987. The annual incidence of all reported cases significantly increased during this time from approximately 16 out of 100,000 in 1985 to 23 out of 100,000 in 1987. Much of this increase is attributed to concurrent increased rates of primary syphilis and late latent syphilis. Incidence rates for all stages of syphilis combined increased significantly among men and blacks during these years. Cumulatively, most reported patients were male (422, 96.1%), aged 20-24 years (204, 55.1%), E-3 (junior) enlisted pay grade (101, 30.1%), and black (217, 53.8%). Sexual exposures were reported most frequently from the eastern U.S. coast and from western Pacific countries.


Assuntos
Militares , Sífilis/epidemiologia , Adolescente , Adulto , Fatores Etários , Feminino , Humanos , Incidência , Masculino , Pessoa de Meia-Idade , Fatores de Risco , Comportamento Sexual , Pessoa Solteira , Sífilis/transmissão , Estados Unidos
7.
QRB Qual Rev Bull ; 2(3): 3-5, 1976 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-823486
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