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The journal Asymptotic Analysis fulfills a twofold function. It aims at publishing original mathematical results in the asymptotic theory of problems affected by the presence of small or large parameters on the one hand, and at giving specific indications of their possible applications to different fields of natural sciences on the other hand.
Asymptotic Analysis thus provides mathematicians with a concentrated source of newly acquired information which they may need in the analysis of asymptotic problems.
Authors: Poláčik, Peter | Quittner, Pavol
Article Type: Research Article
Abstract: We study asymptotic behavior of global positive solutions of the Cauchy problem for the semilinear parabolic equation ut =Δu+up in RN , where p>1+2/N, p(N-2)≤N+2. The initial data are of the form u(x, 0)=αϕ(x), where ϕ is a fixed function with suitable decay at |x|=∞ and α>0 is a parameter. There exists a threshold parameter α* such that the solution exists globally if and only if α≤α* . Our main results describe the asymptotic behavior of the solutions for α∈(0, α* ] and in particular exhibit the difference between the behavior of sub-threshold solutions (α<α* ) and the …threshold solution (α=α* ). Show more
DOI: 10.3233/ASY-2008-0872
Citation: Asymptotic Analysis, vol. 57, no. 3-4, pp. 125-141, 2008
Authors: Peng, Yahong | Wang, Ya-Guang
Article Type: Research Article
Abstract: This paper is devoted to the rigorous theory of nonlinear geometric optics for multiple shocks to a general N×N conservation law in one space variable. For the problem of multiple weak shocks perturbed by small amplitude, high-frequency oscillatory waves, we obtain that the leading profiles of oscillatory shocks are solution to an integro-differential system with free boundaries, the leading terms of shock fronts don't oscillate, and oscillations only appear in the leading terms shock speeds.
Keywords: nonlinear geometric optics, conservation laws, shock waves
DOI: 10.3233/ASY-2008-0864
Citation: Asymptotic Analysis, vol. 57, no. 3-4, pp. 143-198, 2008
Authors: Bendali, A. | Lemrabet, K.
Article Type: Research Article
Abstract: Our purpose is to investigate the effect of a thin dielectric coating on the scattering of a time-harmonic electromagnetic wave by a perfectly conducting metal. An asymptotic expansion of the solution of a model problem is performed relatively to the thickness of the dielectric shell. A suitable scaling as well as an adapted writing of the curl operator inside the thin shell make it possible to achieve an asymptotic expansion of the electromagnetic field at any order. Special stability estimates for Maxwell's equations relatively to the thickness of the dielectric shell then yield optimal error estimates outside the obstacle.
Keywords: scattering, electromagnetism, thin coating, asymptotic analysis
DOI: 10.3233/ASY-2008-0870
Citation: Asymptotic Analysis, vol. 57, no. 3-4, pp. 199-227, 2008
Authors: Kogut, P.I. | Leugering, G.
Article Type: Research Article
Abstract: We consider an elliptic distributed quadratic optimal control problem with exact controllability constraints on a part of the domain which, in turn, is parametrized by a small parameter ε. The quadratic tracking type functional is defined on the remaining part of the domain. We thus consider a family of optimal control problems with state equality constraints. The purpose of this paper is to study the asymptotic limit of the optimal control problems as the parameter ε tends to zero. The analysis presented is in the spirit of the direct approach of the calculus of variations. This is achieved in the …framework of relaxed problems. We finally apply the procedure to an optimal control problem on a perforated domain with holes of critical size. It is shown that a strange term in the terminology of Cioranescu and Murat (Prog. Nonlinear Diff. Eq. Appl., Vol. 31, Birkhäuser-Verlag, Boston, 1997, pp. 49–93) appears in the limiting homogenized problem. Show more
Keywords: controllability constraints, relaxed problems, γ^Δ and Γ-convergence, perforated domains
DOI: 10.3233/ASY-2008-0871
Citation: Asymptotic Analysis, vol. 57, no. 3-4, pp. 229-249, 2008
Article Type: Other
Citation: Asymptotic Analysis, vol. 57, no. 3-4, pp. 251-251, 2008
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