NUMERICAL RANGE AND SUB-SELF-ADJOINT OPERATORS

Volume: 10 Number: 2 March 1, 2020
  • R. Chettouh
  • S. Bouzenada
EN

NUMERICAL RANGE AND SUB-SELF-ADJOINT OPERATORS

Abstract

In this paper, we show that the numerical range of a bounded linear operator T on a complex Hilbert space is a line segment if and only if there are scalars λ and µ such that T ∗ = λT + µI, and we determine the equation of the straight support of this numerical range in terms of λ and µ. An operator T is called sub-self-adjoint if their numerical range is a line segment. The class of sub-self-adjoint operators contains every self-adjoint operator and contained in the class of normal operators. We show that this class is uniformly closed, invariant under unitary equivalence and invariant under affine transformation. Some properties of the sub-self-adjoint operators and their numerical ranges are investigated.

Keywords

References

  1. Donoghue, W. F., (1957), On the numerical range of a bounded operator, Michigan J. Math., 4, pp. 261-263.
  2. Gustafson, K. and Rao, D. K. M., (1997), Numerical Range. The Field of Values of Linear Operators and Matrices, Springer. New York.
  3. Halmos, P. R., (1982), A Hilbert Space Problem Book, Springer-Verlag. New York. Heidelberg. Berlin. Second edition.
  4. Kippenhahn, R., (1951), ¨A Uber den Wertevorrat einer Matrix, Math. Nachr. 6, pp. 193-228.
  5. Kippenhahn, R., (2008), On the numerical range of a matrix, Linear Multilinear Algebra 56 no. 1-2, pp. 185-225. Translated from the German by Paul F. Zachlin and Michiel E. Hochstenbach.

Details

Primary Language

English

Subjects

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Journal Section

-

Authors

R. Chettouh This is me

S. Bouzenada This is me

Publication Date

March 1, 2020

Submission Date

-

Acceptance Date

-

Published in Issue

Year 2020 Volume: 10 Number: 2

APA
Chettouh, R., & Bouzenada, S. (2020). NUMERICAL RANGE AND SUB-SELF-ADJOINT OPERATORS. TWMS Journal of Applied and Engineering Mathematics, 10(2), 492-498. https://izlik.org/JA53LF34PR
AMA
1.Chettouh R, Bouzenada S. NUMERICAL RANGE AND SUB-SELF-ADJOINT OPERATORS. JAEM. 2020;10(2):492-498. https://izlik.org/JA53LF34PR
Chicago
Chettouh, R., and S. Bouzenada. 2020. “NUMERICAL RANGE AND SUB-SELF-ADJOINT OPERATORS”. TWMS Journal of Applied and Engineering Mathematics 10 (2): 492-98. https://izlik.org/JA53LF34PR.
EndNote
Chettouh R, Bouzenada S (March 1, 2020) NUMERICAL RANGE AND SUB-SELF-ADJOINT OPERATORS. TWMS Journal of Applied and Engineering Mathematics 10 2 492–498.
IEEE
[1]R. Chettouh and S. Bouzenada, “NUMERICAL RANGE AND SUB-SELF-ADJOINT OPERATORS”, JAEM, vol. 10, no. 2, pp. 492–498, Mar. 2020, [Online]. Available: https://izlik.org/JA53LF34PR
ISNAD
Chettouh, R. - Bouzenada, S. “NUMERICAL RANGE AND SUB-SELF-ADJOINT OPERATORS”. TWMS Journal of Applied and Engineering Mathematics 10/2 (March 1, 2020): 492-498. https://izlik.org/JA53LF34PR.
JAMA
1.Chettouh R, Bouzenada S. NUMERICAL RANGE AND SUB-SELF-ADJOINT OPERATORS. JAEM. 2020;10:492–498.
MLA
Chettouh, R., and S. Bouzenada. “NUMERICAL RANGE AND SUB-SELF-ADJOINT OPERATORS”. TWMS Journal of Applied and Engineering Mathematics, vol. 10, no. 2, Mar. 2020, pp. 492-8, https://izlik.org/JA53LF34PR.
Vancouver
1.R. Chettouh, S. Bouzenada. NUMERICAL RANGE AND SUB-SELF-ADJOINT OPERATORS. JAEM [Internet]. 2020 Mar. 1;10(2):492-8. Available from: https://izlik.org/JA53LF34PR