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1.
We consider the existence and uniqueness of bounded solutions of periodic evolution equations of the form u=A(t)u+?H(t,u)+f(t), where A(t) is, in general, an unbounded operator depending 1-periodically on t, H is 1-periodic in t, ? is small, and f is a bounded and continuous function that is not necessarily uniformly continuous. We propose a new approach to the spectral theory of functions via the concept of “circular spectrum” and then apply it to study the linear equations u=A(t)u+f(t) with general conditions on f. For small ? we show that the perturbed equation inherits some properties of the linear unperturbed one. The main results extend recent results in the direction, saying that if the unitary spectrum of the monodromy operator does not intersect the circular spectrum of f, then the evolution equation has a unique mild solution with its circular spectrum contained in the circular spectrum of f.  相似文献   

2.
We prove that the operator G, the closure of the first-order differential operator −d/dt+D(t) on L2(R,X), is Fredholm if and only if the not well-posed equation u(t)=D(t)u(t), tR, has exponential dichotomies on R+ and R and the ranges of the dichotomy projections form a Fredholm pair; moreover, the index of this pair is equal to the Fredholm index of G. Here X is a Hilbert space, D(t)=A+B(t), A is the generator of a bi-semigroup, B(⋅) is a bounded piecewise strongly continuous operator-valued function. Also, we prove some perturbations results and consider various examples of not well-posed problems.  相似文献   

3.
In this paper we consider the nonlinear differential equation with deviated argument u(t)=Au(t)+f(t,u(t),u[φ(u(t),t)]), tR+, in a Banach space (X,‖⋅‖), where A is the infinitesimal generator of an analytic semigroup. Under suitable conditions on the functions f and φ, we prove a global existence and uniqueness result for the above equation.  相似文献   

4.
Sufficient conditions on the existence of mild solutions for the following semilinear nonlocal evolution inclusion with upper semicontinuous nonlinearity: u(t)∈A(t)u(t)+F(t,u(t)), 0<t?d, u(0)=g(u), are given when g is completely continuous and Lipschitz continuous in general Banach spaces, respectively. An example concerning the partial differential equation is also presented.  相似文献   

5.
We discuss the existence of periodic solution for the doubly nonlinear evolution equation A(u(t))+∂?(u(t))∋f(t) governed by a maximal monotone operator A and a subdifferential operator ∂? in a Hilbert space H. As the corresponding Cauchy problem cannot be expected to be uniquely solvable, the standard approach based on the Poincaré map may genuinely fail. In order to overcome this difficulty, we firstly address some approximate problems relying on a specific approximate periodicity condition. Then, periodic solutions for the original problem are obtained by establishing energy estimates and by performing a limiting procedure. As a by-product, a structural stability analysis is presented for the periodic problem and an application to nonlinear PDEs is provided.  相似文献   

6.
Let A be a linear, closed, densely defined unbounded operator in a Hilbert space. Assume that A is not boundedly invertible. If Eq. (1) Au=f is solvable, and ‖fδf‖?δ, then the following results are provided: Problem Fδ(u):=‖Aufδ2+αu2 has a unique global minimizer uα,δ for any fδ, uα,δ=A*−1(AA*+αI)fδ. There is a function α=α(δ), limδ→0α(δ)=0 such that limδ→0‖uα(δ),δy‖=0, where y is the unique minimal-norm solution to (1). A priori and a posteriori choices of α(δ) are given. Dynamical Systems Method (DSM) is justified for Eq. (1).  相似文献   

7.
The paper discusses the existence of positive and dead core solutions of the singular differential equation (?(u))=λf(t,u,u,u) satisfying the boundary conditions u(0)=A, u(T)=A, min{u(t):t∈[0,T]}=0. Here λ is a nonnegative parameter, A is a positive constant and the Carathéodory function f(t,x,y,z) is singular at the value 0 of its space variable y.  相似文献   

8.
In this paper, the existence and multiplicity results of solutions are obtained for the second order two-point boundary value problem −u(t)=f(t,u(t)) for all t∈[0,1] subject to u(0)=u(1)=0, where f is continuous. The monotone operator theory and critical point theory are employed to discuss this problem, respectively. In argument, quadratic root operator and its properties play an important role.  相似文献   

9.
We consider bilinear control systems of the form y(t)=Ay(t)+u(t)By(t) where A generates a strongly continuous semigroup of contraction (etA)t?0 on an infinite-dimensional Hilbert space Y whose scalar product is denoted by 〈.,.〉. We suppose that this system is unbounded in the sense that the linear operator B is unbounded from the state Y into itself. Tacking into account eventual control saturation, we study the problem of stabilization by (possibly nonquadratic) feedback of the form u(t)=−f(〈By(t),y(t)〉). Applications to the heat equation is considered.  相似文献   

10.
In this work we provide an existence and location result for the third-order nonlinear differential equation
u?(t)=f(t,u(t),u(t),u(t)),  相似文献   

11.
In this paper the generalized nonlinear Euler differential equation t2k(tu′)u″ + t(f(u)+ k(tu′))u′ + g(u) = 0 is considered. Here the functions f(u), g(u) and k(u) satisfy smoothness conditions which guarantee the uniqueness of solutions of initial value problems, however, no conditions of sub(super) linearity are assumed. We present some necessary and sufficient conditions and some tests for the equivalent planar system to have or fail to have property (X+), which is very important for the existence of periodic solutions and oscillation theory.  相似文献   

12.
In this note, we obtain some results for the Riccati differential equations u′=A(z)+u2 with nonentire meromorphic functions A(z). Some examples are given to illustrate our some results are sharp.  相似文献   

13.
In this paper we are interested in the existence of solutions of the following initial value problem: on (0,T) with u(0)=u0 where A:VV is a monotone operator, G:VV is a nonlinear nonmonotone operator and f:(0,T)→V is a measurable function, by means of a recent generalization of the famous KKM-Fan’s lemma.  相似文献   

14.
We prove an Ambrosetti-Prodi type result for the third order fully nonlinear equation
u?(t)+f(t,u(t),u(t),u(t))=sp(t)  相似文献   

15.
In this paper we give sufficient spectral conditions for the almost automorphy of bounded solutions to differential equations with piecewise constant argument of the form x(t)=Ax([t])+f(t), tR, where A is a bounded linear operator in X and f is an X-valued almost automorphic function.  相似文献   

16.
We consider the question of eventual differentiability of the delay semigroups associated with the retarded equation u(t)=Au(t)+Φut(t?0), where ut is the history function, A generates an immediately norm-continuous semigroup and Φ is bounded. We show that this is determined by the rate of decay of the resolvent of A along vertical lines.  相似文献   

17.
A singular Fredholm operator A is perturbed by an operator of finite rank to obtain an invertible operator B. Theory previously developed for A and B in Hilbert spaces is extended here to Banach spaces. The operator B?1 is used to construct independent elements in the null spaces N(A), N(A2),…, N(Ak), for some positive integer k, and a basis for N(A) and N(A2). The theory is used to compute approximations to eigenfunctions and generalized eigenfunctions of integral operators.  相似文献   

18.
In this note, we present a Massera type theorem for the existence of almost automorphic solutions of periodic linear evolution equations of the form x(t)=A(t)x(t)+f(t), where A(t) is unbounded linear operator depending on t periodically and generates a τ-periodic evolutionary process, f is almost automorphic. The main results are stated in terms of the almost automorphy of solutions and their Carleman spectra.  相似文献   

19.
This paper is concerned with almost automorphy of the solutions to a nonautonomous semilinear evolution equation u(t)=A(t)u(t)+f(t,u(t)) in a Banach space with a Stepanov-like almost automorphic nonlinear term. We establish a composition theorem for Stepanov-like almost automorphic functions. Furthermore, we obtain some existence and uniqueness theorems for almost automorphic solutions to the nonautonomous evolution equation, by means of the evolution family and the exponential dichotomy. Some results in this paper are new even if A(t) is time independent.  相似文献   

20.
We consider semilinear integrodifferential equations of the form u′(t) + A(t) u(t) = ∝0tg(t, s, u(s)) ds + f(t), u(0) = u0. For each t ? 0, the operator A(t) is assumed to be the negative generator of a strongly continuous semigroup in a Banach space X. The domain D(A(t)) of A(t) is allowed to vary with t. Thus our models are Volterra integrodifferential equations of “hyperbolic type.” These types of equations arise naturally in the study of viscoelasticity. Our main results are the proofs of existence, uniqueness, continuation and continuous dependence of the solutions.  相似文献   

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