Complete Non-Selfadjointness for Schrödinger Operators on the Semi-Axis
Christoph Fischbacher, Serguei Naboko, Ian Wood
Abstract
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Christoph Fischbacher, Serguei Naboko, Ian Wood
Abstract
Open-access reader
In this note we investigate complete non-selfadjointness for all maximally dissipative extensions of a Schrödinger operator on a half-line with dissipative bounded potential and dissipative boundary condition. We show that all maximally dissipative extensions that preserve the differential expression are completely non-selfadjoint. However, it is possible for maximally dissipative extensions to have a one-dimensional reducing subspace on which the operator is selfadjoint. We give a characterisation of these extensions and the corresponding subspaces and present a specific example.
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In this note we investigate complete non-selfadjointness for all maximally dissipative extensions of a Schrödinger operator on a half-line with dissipative bounded potential and dissipative boundary condition. We show that all maximally dissipative extensions that preserve the differential expression are completely non-selfadjoint. However, it is possible for maximally dissipative extensions to have a one-dimensional reducing subspace on which the operator is selfadjoint. We give a characterisation of these extensions and the corresponding subspaces and present a specific example.
Key concepts: Dissipative system, Dissipative operator, Linear subspace, Bounded function, Operator (biology), Mathematics, Schrödinger's cat, Subspace topology