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E-raamat: Complex Analysis and Spectral Theory

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  • Formaat: 280 pages
  • Sari: Contemporary Mathematics
  • Ilmumisaeg: 02-Jul-2020
  • Kirjastus: American Mathematical Society
  • ISBN-13: 9781470454531
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  • Formaat: 280 pages
  • Sari: Contemporary Mathematics
  • Ilmumisaeg: 02-Jul-2020
  • Kirjastus: American Mathematical Society
  • ISBN-13: 9781470454531
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This volume contains the proceedings of the Conference on Complex Analysis and Spectral Theory, in celebration of Thomas Ransford's 60th birthday, held from May 21-25, 2018, at Laval University, Quebec, Canada.

Spectral theory is the branch of mathematics devoted to the study of matrices and their eigenvalues, as well as their infinite-dimensional counterparts, linear operators and their spectra. Spectral theory is ubiquitous in science and engineering because so many physical phenomena, being essentially linear in nature, can be modelled using linear operators. On the other hand, complex analysis is the calculus of functions of a complex variable. They are widely used in mathematics, physics, and in engineering. Both topics are related to numerous other domains in mathematics as well as other branches of science and engineering. The list includes, but is not restricted to, analytical mechanics, physics, astronomy (celestial mechanics), geology (weather modeling), chemistry (reaction rates), biology, population modeling, economics (stock trends, interest rates and the market equilibrium price changes).

There are many other connections, and in recent years there has been a tremendous amount of work on reproducing kernel Hilbert spaces of analytic functions, on the operators acting on them, as well as on applications in physics and engineering, which arise from pure topics like interpolation and sampling. Many of these connections are discussed in articles included in this book.
Preface vii
List of Invited Speakers
xi
Additive maps preserving matrices of inner local spectral radius zero at some fixed vector
1(10)
Constantin Costara
A global domination principle for P-pluripotential theory
11(10)
Norm Levenberg
Menuja Perera
A holomorphic functional calculus for finite families of commuting semigroups
21(80)
Jean Esterle
An integral Hankel operator on H1(D)
101(8)
Miron B. Bekker
Joseph A. Cima
A panorama of positivity. II: Fixed dimension
109(42)
Alexander Belton
Dominique Guillot
Apoorva Khare
Mihai Putinar
Boundary values of holomorphic distributions in negative Lipschitz classes
151(30)
Anthony G. O'Farrell
Cyclicity in Dirichlet type spaces
181(14)
K. Kellay
F. Le Manach
M. Zarrabi
Inner vectors for Toeplitz operators
195(18)
Raymond Cheng
Javad Mashreghi
William T. Ross
Jack and Julia
213(4)
Richard Fournier
Oliver Roth
Spectrum and local spectrum preservers of skew Lie products of matrices
217(24)
Z. Abdelali
A. Bourhim
M. Mabrouk
Numerical range and compressions of the shift
241(22)
Kelly Bickel
Pamela Gorkin
On the asymptotics of n-times integrated semigroups
263(10)
Jose E. Gale
Maria M. Martinez
Pedro J. Miana
Powers of operators: convergence and decomposition
273
W. Arendt
I. Chalendar
H. Garth Dales, Lancaster University, United Kingdom.

Dmitry Khavinson, University of South Florida, Tampa, FL.

Javad Mashreghi, Laval University, Quebec, QC, Canada.