297 research outputs found

    Sampling Distributions of Random Electromagnetic Fields in Mesoscopic or Dynamical Systems

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    We derive the sampling probability density function (pdf) of an ideal localized random electromagnetic field, its amplitude and intensity in an electromagnetic environment that is quasi-statically time-varying statistically homogeneous or static statistically inhomogeneous. The results allow for the estimation of field statistics and confidence intervals when a single spatial or temporal stochastic process produces randomization of the field. Results for both coherent and incoherent detection techniques are derived, for Cartesian, planar and full-vectorial fields. We show that the functional form of the sampling pdf depends on whether the random variable is dimensioned (e.g., the sampled electric field proper) or is expressed in dimensionless standardized or normalized form (e.g., the sampled electric field divided by its sampled standard deviation). For dimensioned quantities, the electric field, its amplitude and intensity exhibit different types of Bessel KK sampling pdfs, which differ significantly from the asymptotic Gauss normal and χ2p(2)\chi^{(2)}_{2p} ensemble pdfs when ν\nu is relatively small. By contrast, for the corresponding standardized quantities, Student tt, Fisher-Snedecor FF and root-FF sampling pdfs are obtained that exhibit heavier tails than comparable Bessel KK pdfs. Statistical uncertainties obtained from classical small-sample theory for dimensionless quantities are shown to be overestimated compared to dimensioned quantities. Differences in the sampling pdfs arising from de-normalization versus de-standardization are obtained.Comment: 12 pages, 15 figures, accepted for publication in Phys. Rev. E, minor typos correcte

    The effect of structural changes on magnetic permeability of amorphous powder Ni80Co20

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    The structural changes of Ni80Co20 amorphous powder were tested during heating. The alloy was obtained by electrolysis from ammonia solution sulfate of cobalt and nickel on the titanium cathode. The differential scanning calorimetry (DSC) method was used to detect that the crystallization process of powder occurred in two stages with crystallization peaks temperatures of the first stage at 690 K and of the second stage at 790 K. The effect of structural relaxation and crystallization of powder on magnetic properties was predicted by measurement of the relative magnetic permeability change in isothermal and nonisothermal conditions. On the basis of the time change of relative magnetic permeability at a defined temperature in the temperature range of the first and second crystallization peak on the thermogram, the kinetics of crystallization was defined. It was predicted, that in the initial time interval, in the range of the first crystallization peak, the rate of crystallization is determined by the rate of nucleation of the amorphous part of the powder. However, in the second time interval, the crystallization rate is determined by the rate of diffusion. In the range of the second peak, in the beginning the rate of crystal growth is determined by activation energy of the atom pass from smaller to bigger crystal grain. In second time interval, the rate of crystal grain growth is determined by the diffusion rate of atoms to the location of integration into bigger crystal grains. For all processes which determine the rate of crystallization in temperature ranges of both crystallization peaks, the Arrhenius temperature dependence of rate for those processes is obtained. The relative magnetic permeability of crystallized powder at 873 K, is smaller for about 30 % than the relative magnetic permeability of fresh powder at room temperature. However, structurally relaxed powder at 573 K has an about 22 % larger magnetic permeability than the same fresh powder at room temperature

    Nonstationary random acoustic and electromagnetic fields as wave diffusion processes

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    We investigate the effects of relatively rapid variations of the boundaries of an overmoded cavity on the stochastic properties of its interior acoustic or electromagnetic field. For quasi-static variations, this field can be represented as an ideal incoherent and statistically homogeneous isotropic random scalar or vector field, respectively. A physical model is constructed showing that the field dynamics can be characterized as a generalized diffusion process. The Langevin--It\^{o} and Fokker--Planck equations are derived and their associated statistics and distributions for the complex analytic field, its magnitude and energy density are computed. The energy diffusion parameter is found to be proportional to the square of the ratio of the standard deviation of the source field to the characteristic time constant of the dynamic process, but is independent of the initial energy density, to first order. The energy drift vanishes in the asymptotic limit. The time-energy probability distribution is in general not separable, as a result of nonstationarity. A general solution of the Fokker--Planck equation is obtained in integral form, together with explicit closed-form solutions for several asymptotic cases. The findings extend known results on statistics and distributions of quasi-stationary ideal random fields (pure diffusions), which are retrieved as special cases.Comment: 54 pages, 8 figures, to appear in J. Phys. A: Math. Theo

    Effect of a nematicidal Bacillus thuringiensis strain on free- living nematodes : 3. Characterization of the intoxication process

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    La toxicité de #Bacillus thuringiensis est fonction de la température. L'incubation de #Caenorhabditis elegans avec des souches de #B. thuringiensis à 16, 20 et 25°C montre que la toxicité décroît en même temps que la température. A 16°C, la toxicité disparaît complètement, tandis qu'elle atteint son maximum à 25°C. La toxicité, fonction du pH, diminue significativement lorsque les nématodes sont mis en incubation dans des bases faibles (NH4Cl, chloroquine, acridine orange, rouge de méthyle, rouge neutre). A partir de ces résultats, il est possible d'avancer l'hypothèse que l'agent nématicide pénètre à l'intérieur des cellules intestinales, ce qui constitue une différence notable avec les toxines des souches insecticides de #B. thuringiensis lesquelles agissent au niveau de la membrane en brosse. Bien que l'absence de toxine purifiée ne permette pas l'élucidation définitive de son mode d'action, les résultats exposés dans cette troisième, et dernière, partie de la série de publications traitant du sujet, apportent une indication convaincante du fait que les souches nématicides de #B. thuringiensis$ ne peuvent tenir les mêmes promesses que les souches insecticides en tant qu'agent de contrôle biologique. (Résumé d'auteur

    Effect of nematicidal Bacillus thuringiensis strains on free- living nematodes : 1. Light microscopic observations, species and biological stage specificity and identification of resistant mutants of Caenorhabditis elegans

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    L'observation en microscopie optique de l'action toxique des spores/cristaux de #Bacillus thuringiensis montre que, chez #Caenorhabditis elegans, l'intestin est détruit en deux phases sur une période de 24 h. L'anneau antérieur de quatre cellules constitue la première cible. Les observations indiquent que les tissus intestinaux sont les seuls détruits. Le criblage de quatorze autres espèces de Rhabditides vis-à-vis de trois souches nématicides de #B. thuringiensis actives contre #C. elegans a démontré qu'une seule de ces espèces était sensible et indiqué une forte spécificité du facteur nématicide. Cependant, au contraire des toxines de #B. thuringiensis douées de spécificité envers les insectes, les toxines nématicides ne montrent qu'une faible spécificité envers les différents stades de #C. elegans, tous les stades, y compris les adultes, étant sensibles. De plus, la sensibilité s'accroît lors du processus de développement. Deux mutants de #C. elegans,obtenusparactiondeleˊthylemeˊthylesulfonate,montrentunesensibiliteˊreˊduitede50, obtenus par action de l'éthyle-méthyle-sulfonate, montrent une sensibilité réduite de 50% envers l'une des souches nématicides. En addition, l'un des mutants montre une résistance croisée à une deuxième souche nématicide de #B. thuringiensis envers laquelle elle n'avait pas été testée. Des données préliminaires indiquent que cette réduction de la sensibilité chez les mutants n'est pas causée par une diminution de l'activité de pompage du pharynx. (Résumé d'auteur

    Effect of nematicidal Bacillus thuringiensis strains on free-living nematodes : 2. Ultrastructural analysis of the intoxication process in Caenorhabditis elegans

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    La microscopie électronique par transmission a été utilisée pour décrire l'intoxication de #Caenorhabditis elegans se nourrissant sur des spores/cristaux de #Bacillus thuringiensis. La toxine agit directement sur l'intestin où elle affecte initialement l'anneau de quatre cellules le plus antérieur. En 12 heures, le volume de ces cellules diminue considérablement, les microvillosités régressent lentement, de nombreux organites cellulaires subissent des changements spectaculaires pour être finalement détruits. Il n'a pas été observé de rupture de la membrane cellulaire apicale. Les tissus autres qu'intestinaux n'apparaissent pas affectés. Cette étude révèle des différences ultrastructurales considérables entre le mode d'action des toxines nématicides et celui des cristaux insecticides émanant les uns et les autres de #Bacillus thuringiensis$. (Résumé d'auteur

    New Halogenated Phenylbacteriochlorins and Their Efficiency in Singlet-Oxygen Sensitization

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    Halogenated phenylbacteriochlorins are synthesized with high yields in a two-step procedure. They have strong absorbances in the red and are very stable to air and light at room temperature. Flash photolysis measurements show that the triplet states of these bacteriochlorins have 30 μs lifetimes in deaerated toluene, that are quenched with diffusion-controlled rate constants by molecular oxygen. Time-resolved photoacoustic measurements, with nanosecond and nanocalorie resolution, show that these bacteriochlorins sensitize the formation of singlet oxygen with nearly unity quantum yield. However, singlet-oxygen phosphorescence measurements indicate that physical quenching occurs before the singlet-oxygen molecules diffuse into solution, and nearly half of the sensitized singlet states are lost

    Conservation and entanglement of Hermite-Gaussian modes in parametric down-conversion

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    We show that the transfer of the angular spectrum of the pump beam to the two-photon state in spontaneous parametric down-conversion enables the generation of entangled Hermite-Gaussian modes. We derive an analytical expression for the two-photon state in terms of these modes and show that there are restrictions on both the parity and order of the down-converted Hermite-Gaussian fields. Using these results, we show that the two-photon state is indeed entangled in Hermite-Gaussian modes. We propose experimental methods of creating maximally-entangled Bell states and non-maximally entangled pure states of first order Hermite-Gaussian modes.Comment: 9 pages, 4 figures. Corrections made as per referee comments, references updated. Submitted PR

    Photophysics of 3-hydroxyflavone in supercritical CO2: a probe to study the microenvironment of SCF

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    The excitation of 3-hydroxyflavone (3HF) to its second excited singlet state (S2) gives rise to dual fluorescence in supercritical carbon dioxide. The ultraviolet fluorescence originated from the S2 state of 3HF is well separated from the green emission emanating from the tautomeric form, produced via the excited state intramolecular proton transfer. The relative intensity of the S2 to the tautomer fluorescence (S2/T) has been studied as a function of pressure and temperature. It is shown that this ratio reflects the microheterogeneity of the supercritical CO2, and confirms the value of fluorometric probes in disclosing the microscopic properties of supercritical fluids.http://www.sciencedirect.com/science/article/B6TFN-4BVP7G9-3/1/02dd61c567fe3e9c8d6ac86a01f79ce

    Study of chemical sympathectomy in endotoxin-induced lethality and fibrin deposition

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    Study of chemical sympathectomy in endotoxin-induced lethality and fibrin deposition. Shock and the generalized Shwartzman reaction are well known features of endotoxin which have been shown to involve the sympathetic nervous system. The mechanism of sympathetic nervous system involvement with endotoxin injection was studied in rabbits chemically sympathectomized with 6-hydroxydopamine. Endotoxin, in doses producing a spectrum of morbidity and mortality in normal rabbits, was administered i.v. to chemically sympathectomized, normal, and unilateral renal surgically sympathectomized animals. Chemical sympathectomy produced a significant depletion of tissue norepinephrine which, in endotoxin recipient animals, was associated with a significantly lower mortality rate and greatly decreased fibrin deposition in the lungs and kidneys, despite intravascular coagulation. Unilateral renal sympathectomy afforded protection to the ipsilateral kidney, but data on mortality and systemic fibrin deposition were similar to those reported for normal rabbits given endotoxin. Six-hydroxydopamine prevents significant tissue injury secondary to endotoxin in this experimental model. In addition, the data provide direct evidence that an intact reactive sympathetic nervous system is essential for development of lethal toxicity and generalized Shwartzman reaction due to endotoxin.Etude de la sympathectomie chimique de la lethalité et des dépôts de fibrine chez animaux qui ont reçu l'endotoxine. Le choc et le phénomène de Schwartzman généralisé sont des conséquences bien connues de l'endotoxine et il a été montré que ces réactions impliquent le systéme nerveux sympathique. Le mécanisme de la mise en jeu du système nerveux sympathique par l'injection d'endotoxine a été étudié chez des lapins ayant subi une sympathectomie chimique par la 6-hydroxydopamine. L'endotoxine, aux doses qui déterminent une morbidité et une mortalité chez les lapins normaux, a été administrée par voie intraveineuse à des animaux normaux, ayant subi une sympathectomie chimique ou ayant subi une sympathectomie rénale, chirurgicale et unilatérale. La sympathectomie chimique a produit une déplétion significative de norépinéphrine tissulaire qui, chez les animaux qui ont reçu l'endotoxine, a été associée à une diminution significative de la mortalité et une diminution importante des dépôts de fibrine dans les poumons et les reins malgré la coagulation intravasculaire. La sympathectomie unilatérale a protégé le rein ipsilatéral mais la mortalité et les dépôts systémiques de fibrine ont été semblables à ceux observés chez les lapins normaux qui ont reçu l'endotoxine. La 6-hydroxydopamine diminue de façon significative les altérations tissulaires secondaires à l'endotoxine dans ce modèle expérimental. De surcroît, ces observations apportent la preuve directe de ce qu'un système nerveux sympathique intact et réactif est essentiel pour l'apparition de la léthalité et du phénomène de Schwartzman généralisé consécutifs à l'endotoxine
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