979 resultados para PP waves


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Assuming that nuclear matter can be treated as a perfect fluid, we study the propagation of perturbations in the baryon density. The equation of state is derived from a relativistic mean field model, which is a variant of the non-linear Walecka model. The expansion of the Euler and continuity equations of relativistic hydrodynamics around equilibrium configurations leads to differential equations for the density perturbation. We solve them numerically for linear and spherical perturbations and follow the propagation of the initial pulses. For linear perturbations we find single soliton solutions and solutions with one or more solitons followed by ""radiation"". Depending on the equation of state a strong damping may occur. We consider also the evolution of perturbations in a medium without dispersive effects. In this case we observe the formation and breaking of shock waves. We study all these equations also for matter at finite temperature. Our results may be relevant for the analysis of RHIC data. They suggest that the shock waves formed in the quark gluon plasma phase may survive and propagate in the hadronic phase. (C) 2009 Elseiver. B.V. All rights reserved.

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In this work we present the J/psi measurement in p+p collisions within the STAR collaboration Quarkonium program. This measurements aim to be the baseline measurement of a more comprehensive systematic study of quarkonium states production in order to understand their in medium modification. Here we report the total cross section and rho(T) distribution, and find them to be consistent with pQCD CEM predictions as well as to previous measurements at the same center-of-mass energy.

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We study the existence and stability of periodic travelling-wave solutions for generalized Benjamin-Bona-Mahony and Camassa-Holm equations. To prove orbital stability, we use the abstract results of Grillakis-Shatah-Strauss and the Floquet theory for periodic eigenvalue problems.

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In this paper the behavior of matter waves in suddenly terminated potential structures is investigated numerically. It is shown that there is no difference between a fully quantum mechanical treatment and a semiclassical one with regards to energy redistribution. For the quantum case it is demonstrated that there can be substantial reflection at the termination. The neglect of backscattering by the semiclassical method brings about major differences in the case of low kinetic energies. A simple phenomenological model is shown to partially explain the observed backscattering using dynamics of reduced dimensionality.

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In this paper we present an analysis of how matter waves, guided as propagating modes in potential structures, are split under adiabatic conditions. The description is formulated in terms of localized states obtained through a unitary transformation acting on the mode functions. The mathematical framework results in coupled propagation equations that are decoupled in the asymptotic regions as well before as after the split. The resulting states have the advantage of describing propagation in situations, for instance matter-wave interferometers, where local perturbations make the transverse modes of the guiding potential unsuitable as a basis. The different regimes of validity of adiabatic propagation schemes based on localized versus delocalized basis states are also outlined. Nontrivial dynamics for superposition states propagating through split potential structures is investigated through numerical simulations. For superposition states the influence of longitudinal wave-packet extension on the localization is investigated and shown to be accurately described in quantitative terms using the adiabatic formulations presented here.

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Ultracold gases in ring geometries hold promise for significant improvements of gyroscopic sensitivity. Recent experiments have realized atomic and molecular storage rings with radii in the centimeter range, sizes whose practical use in inertial sensors requires velocities significantly in excess of typical recoil velocities. We use a combination of analytical and numerical techniques to study the coherent acceleration of matter waves in circular waveguides, with particular emphasis on its impact on single-mode propagation. In the simplest case we find that single-mode propagation is best maintained by the application of time-dependent acceleration force with the temporal profile of a Blackmann pulse. We also assess the impact of classical noise on the acceleration process.

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Neste trabalho foi feito uma avaliação do polipropileno funcionalizado com metacrilato de glicidila (PP-GMA) como agente compatibilizante em blendas reativas de polipropileno e nylon 6. As reações de funcionalização do polipropileno (PP) com metacrilato de glicidila (GMA) foram feitas em estado fundido e os polímeros modificados (PP-GMA) foram utilizados em misturas de PP com nylon 6, para a avaliação das propriedades mecânicas, térmicas e morfológicas da blenda. As blendas foram preparadas variando a concentração de nylon 6 e também do agente compatibilizante. Após o estudo da ação da concentração de nylon 6 e do agente compatibilizante nas blendas, foi verificado o comportamento do PP-GMA com diferentes teores de incorporação molar do GMA no polipropileno. Utilizou-se dois tipos de nylon 6, um deles com maior número de terminais carboxílicos, a fim de avaliar o efeito desses grupos na compatibilidade do sistema. As blendas obtidas foram caracterizadas por calorimetria diferencial de varredura, microscopia eletrônica de varredura e análise das propriedades mecânicas e dinâmico-mecânicas. Os resultados mostraram que a adição do PP-GMA provoca alterações na morfologia das blendas, apresentando uma melhor dispersão e redução no tamanho das partículas dispersas. Além disso, há um aumento nas propriedades mecânicas comparado com as propriedades das blendas não compatibilizadas, que pode ser atribuído a melhor adesão entre as fases para ambos os nylons utilizados neste trabalho. Foi feito estudo comparativo entre as blendas de PP/PP-GMA/Ny6 e PP/PP-MA/Ny6 na proporção de 63/7/30. O efeito do tipo de agente compatibilizante foi caracterizado por calorimetria diferencial de varredura, microscopia eletrônica de varredura e análise das propriedades mecânicas e dinâmico-mecânicas. Os resultados indicaram que o polipropileno modificado com anidrido maleico (PP-MA) mostrou um melhor efeito compatibilizante nesses sistemas. Ou seja, a interação dos terminais amino do nylon foram mais suscetíveis a ação do grupamento anidrido no PP-MA, do que o grupamento epóxido no PP-GMA.

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This position paper argues that at this time of Mexico’s ongoing big transformation, legal educators and researchers in Mexico need to pay greater attention to international economic law, and that a renewal and perhaps some re-orientation of the approach to teaching international economic law, could provide significant contributions to and shape and support both the objectives and outcomes of reform in Mexico. International Economic Law courses and research can be made more useful, not only for students themselves, but also for their contribution towards the role that academics, lawyers, and other epistemic communities need to play in the political, economic and social evolution that is accelerating in Mexico.

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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This paper presents an experimental technique for structural health monitoring (SHM) based on Lamb waves approach in an aluminum plate using piezoelectric material as actuators and sensors. Lamb waves are a form of elastic perturbation that remains guided between two parallel free surfaces, such as the upper and lower surfaces of a plate, beam or shelf. Lamb waves are formed when the actuator excites the surface of the structure with a pulse after receiving a signal. Two PZTs were placed in the plate surface and one of them was used to send a predefined wave through the structure. Thus, the other PZT (adjacent) becomes the sensor. Using this methodology, this paper presents one case of damage detection considering the aluminum plate in the free-free-free-free boundary condition. The damage was simulated by adding additional mass on the plate. It is proposed two damage detection indexes obtained from the experimental signal, involving the Fast Fourier Transform (FFT) and the power spectral density (PSD) that were computed using the output signal. The results show the viability of the presented methodology to damage detection in smart structures

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The purpose of the work is to study the existence and nonexistence of shock wave solutions for the Burger equations. The study is developed in the context of Colombeau's theory of generalized functions (GFs). This study uses the equality in the strict sense and the weak equality of GFs. The shock wave solutions are given in terms of GFs that have the Heaviside function, in x and ( x, t) variables, as macroscopic aspect. This means that solutions are sought in the form of sequences of regularizations to the Heaviside function, in R-n and R-n x R, in the distributional limit sense.

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)