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This book is a self-contained advanced monograph on inequalities
involving the numerical radius of bounded linear operators acting
on complex Hilbert spaces. The study of numerical range and
numerical radius has a long and distinguished history starting from
the Rayleigh quotients used in the 19th century to nowadays
applications in quantum information theory and quantum computing.
This monograph is intended for use by both researchers and graduate
students of mathematics, physics, and engineering who have a basic
background in functional analysis and operator theory. The book
provides several challenging problems and detailed arguments for
the majority of the results. Each chapter ends with some notes
about historical views or further extensions of the topics. It
contains a bibliography of about 180 items, so it can be used as a
reference book including many classical and modern numerical radius
inequalities.
Inequalities play a central role in mathematics with various
applications in other disciplines. The main goal of this
contributed volume is to present several important matrix,
operator, and norm inequalities in a systematic and self-contained
fashion. Some powerful methods are used to provide significant
mathematical inequalities in functional analysis, operator theory
and numerous fields in recent decades. Some chapters are devoted to
giving a series of new characterizations of operator monotone
functions and some others explore inequalities connected to
log-majorization, relative operator entropy, and the Ando-Hiai
inequality. Several chapters are focused on Birkhoff-James
orthogonality and approximate orthogonality in Banach spaces and
operator algebras such as C*-algebras from historical perspectives
to current development. A comprehensive account of the boundedness,
compactness, and restrictions of Toeplitz operators can be found in
the book. Furthermore, an overview of the Bishop-Phelps-Bollobas
theorem is provided. The state-of-the-art of Hardy-Littlewood
inequalities in sequence spaces is given. The chapters are written
in a reader-friendly style and can be read independently. Each
chapter contains a rich bibliography. This book is intended for use
by both researchers and graduate students of mathematics, physics,
and engineering.
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