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Coordinate-Free Approach for the Model Operator Associated With a Third-Order Dissipative Operator

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Date

2019

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Frontiers Media Sa

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GOLD

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No

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Abstract

In this paper we investigate the spectral properties of a third-order differential operator generated by a formally-symmetric differential expression and maximal dissipative boundary conditions. In fact, using the boundary value space of the minimal operator we introduce maximal selfadjoint and maximal non-selfadjoint (dissipative, accumulative) extensions. Using Solomyak's method on characteristic function of the contractive operator associated with a maximal dissipative operator we obtain some results on the root vectors of the dissipative operator. Finally, we introduce the selfadjoint dilation of the maximal dissipative operator and incoming and outgoing eigenfunctions of the dilation.

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Keywords

Coordinate-Free Approach, Model Operator, Characteristic Function, Spectral Analysis, Dissipative Operator, Dissipative system, Semi-elliptic operator, Compact operator, Dilation (metric space), QC1-999, Spectral Theory of Differential Operators, Operator (biology), Mathematical analysis, Quantum mechanics, Biochemistry, Gene, characteristic function, Dissipative operator, FOS: Mathematics, Global Well-Posedness of Nonlinear Wave Equations, Eigenfunction, Shift operator, Boundary value problem, Mathematical Physics, Eigenvalues and eigenvectors, Extension (predicate logic), Applied Mathematics, Physics, model operator, Hilbert space, coordinate-free approach, Computer science, spectral analysis, Nonlocal Partial Differential Equations and Boundary Value Problems, Programming language, Chemistry, Differential Operators, dissipative operator, Combinatorics, Physical Sciences, Repressor, Multiplication operator, Differential operator, Transcription factor, Mathematics

Fields of Science

01 natural sciences, 0101 mathematics

Citation

Ugurlu, Ekin; Baleanu, Dumitru, "Coordinate-Free Approach for the Model Operator Associated With a Third-Order Dissipative Operator", Frontiers in Physics, Vol. 7, (July 2019).

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Q2

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3

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Frontiers in Physics

Volume

7

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Scopus : 5

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Mendeley Readers : 16

SCOPUS™ Citations

5

checked on Feb 23, 2026

Web of Science™ Citations

3

checked on Feb 23, 2026

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