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Boundary Conditions for Singular Perturbations of Self-Adjoint Operators

Functional Analysis 2007-05-23 v2 Mathematical Physics math.MP

Abstract

Let A:D(A)\subseteq\H\to\H be an injective self-adjoint operator and let τ:D(A)\X\tau:D(A)\to\X, X a Banach space, be a surjective linear map such that \|\tau\phi\|_\X\le c \|A\phi\|_\H. Supposing that \text{\rm Range} (\tau')\cap\H' =\{0\}, we define a family AΘτA^\tau_\Theta of self-adjoint operators which are extensions of the symmetric operator A{τ=0}.A_{|\{\tau=0\}.}. Any ϕ\phi in the operator domain D(AΘτ)D(A^\tau_\Theta) is characterized by a sort of boundary conditions on its univocally defined regular component \phireg\phireg, which belongs to the completion of D(A) w.r.t. the norm \|A\phi\|_\H. These boundary conditions are written in terms of the map τ\tau, playing the role of a trace (restriction) operator, as τ\phireg=ΘQϕ\tau\phireg=\Theta Q_\phi, the extension parameter Θ\Theta being a self-adjoint operator from X' to X. The self-adjoint extension is then simply defined by AΘτϕ:=A\phiregA^\tau_\Theta\phi:=A \phireg. The case in which Aϕ=TϕA\phi=T*\phi is a convolution operator on LD, T a distribution with compact support, is studied in detail.

Keywords

Cite

@article{arxiv.math/0102018,
  title  = {Boundary Conditions for Singular Perturbations of Self-Adjoint Operators},
  author = {Andrea Posilicano},
  journal= {arXiv preprint arXiv:math/0102018},
  year   = {2007}
}

Comments

Revised version. To appear in Operator Theory: Advances and Applications, vol. 132

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