Complex analysis of symmetric operators, I
Комплексный анализ симметричных операторов, I
2024-08-20
SCID: 54.1/9w4ymk2n
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Nevanlinna curvesWeyl curvescharacteristic vector bundlesentire operatorssymmetric operators
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Abstract (AI)
Based on the relationship of symmetric operators with Hermitian symmetric spaces, we introduce the notion of \emph{Weyl curve} for a symmetric operator $T$, which is the geometric abstraction and generalization of the well-known Weyl functions. We prove that there is a one-to-one correspondence between unitary equivalence classes of simple symmetric operators and congruence classes of Nevanlinna curves (the geometric analogue of operator-valued Nevanlinna functions). To prove this result, we introduce a \emph{canonical} functional model for $T$ in terms of its \emph{characteristic vector bundles}. In this geometric formalism, when the deficiency indices are $(n,n)$ ($n\leq +\infty$) we also introduce the notion of \emph{entire operators}, whose Weyl curves are entire in the Grassmannian $Gr(n,2n)$. If $n$ is finite, this makes it possible to introduce modern value distribution theory of entire curves into the picture and to demonstrate that the distribution of eigenvalues of a \emph{generic} abstract boundary value problem is the same thing as the value distribution of the Weyl curve with respect to the Cartier divisor induced by the corresponding boundary condition. Many other new concepts are introduced and many new results are obtained as well.
Key Findings
1
Constructs a canonical functional model for symmetric operators using characteristic vector bundles.
2
Defines entire operators for equal deficiency indices through Weyl curves that are entire in the Grassmannian Gr(n,2n).
3
Establishes a one-to-one correspondence between unitary equivalence classes of simple symmetric operators and congruence classes of Nevanlinna curves.
4
For finite deficiency index, identifies eigenvalue distributions of generic abstract boundary value problems with value distributions of Weyl curves relative to boundary-condition Cartier divisors.
5
Introduces Weyl curves as geometric abstractions and generalizations of classical Weyl functions for symmetric operators.
Research Object
simple symmetric operators and their abstract boundary value problems
Research Subject
geometric Weyl-curve representation, unitary-equivalence classification, entire-operator properties, and eigenvalue distribution
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2024-08-20
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