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Since its conception in the 1960s, string theory has been hailed as
one of the most promising routes we have to unify quantum mechanics
and general relativity. This book provides a concise introduction
to string theory explaining central concepts, mathematical tools
and covering recent developments in physics including
compactifications and gauge/string dualities. With string theory
being a multidisciplinary field interfacing with high energy
physics, mathematics and quantum field theory, this book is ideal
for both students with no previous knowledge of the field and
scholars from other disciplines who are looking for an introduction
to basic concepts.
Since its conception in the 1960s, string theory has been hailed as
one of the most promising routes we have to unify quantum mechanics
and general relativity. This book provides a concise introduction
to string theory explaining central concepts, mathematical tools
and covering recent developments in physics including
compactifications and gauge/string dualities. With string theory
being a multidisciplinary field interfacing with high energy
physics, mathematics and quantum field theory, this book is ideal
for both students with no previous knowledge of the field and
scholars from other disciplines who are looking for an introduction
to basic concepts.
Boundary conformal field theory is concerned with a class of
two-dimensional quantum field theories which display a rich
mathematical structure and have many applications ranging from
string theory to condensed matter physics. In particular, the
framework allows discussion of strings and branes directly at the
quantum level. Written by internationally renowned experts, this
comprehensive introduction to boundary conformal field theory
reaches from theoretical foundations to recent developments, with
an emphasis on the algebraic treatment of string backgrounds.
Topics covered include basic concepts in conformal field theory
with and without boundaries, the mathematical description of
strings and D-branes, and the geometry of strongly curved
spacetime. The book offers insights into string geometry that go
beyond classical notions. Describing the theory from basic
concepts, and providing numerous worked examples from conformal
field theory and string theory, this reference is of interest to
graduate students and researchers in physics and mathematics.
This volume, 106 of the Les Houches Summer School series, brings
together applications of integrability to supersymmetric gauge and
string theory. The book focuses on the application of integrability
and problems in quantum field theory. Particular emphasis is given
to the exact solution of planar N=4 super-Yang-Mills theory and its
relation with string theory on the one hand, and the exact
determination of the low-energy physics of N=2 super-Yang-Mills
theories on the other; links with other domains are also explored.
The purpose of the Les Houches Summer School was to bring together
young researchers and specialists from statistical physics,
condensed matter physics, gauge and string theory, and mathematics,
to stimulate discussion across these different research areas.
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