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The theory of complex analytic sets is part of the modern
geometrical theory of functions of several complex variables. A
wide circle of problems in multidimensional complex analysis,
related to holomorphic functions and maps, can be reformulated in
terms of analytic sets. In these reformulations additional
phenomena may emerge, while for the proofs new methods are
necessary. (As an example we can mention the boundary properties of
conformal maps of domains in the plane, which may be studied by
means of the boundary properties of the graphs of such maps.) The
theory of complex analytic sets is a relatively young branch of
complex analysis. Basically, it was developed to fulfill the need
of the theory of functions of several complex variables, but for a
long time its development was, so to speak, within the framework of
algebraic geometry - by analogy with algebraic sets. And although
at present the basic methods of the theory of analytic sets are
related with analysis and geometry, the foundations of the theory
are expounded in the purely algebraic language of ideals in
commutative algebras. In the present book I have tried to eliminate
this noncorrespondence and to give a geometric exposition of the
foundations of the theory of complex analytic sets, using only
classical complex analysis and a minimum of algebra (well-known
properties of polynomials of one variable). Moreover, it must of
course be taken into consideration that algebraic geometry is one
of the most important domains of application of the theory of
analytic sets, and hence a lot of attention is given in the present
book to algebraic sets.
The theory of complex analytic sets is part of the modern
geometrical theory of functions of several complex variables. A
wide circle of problems in multidimensional complex analysis,
related to holomorphic functions and maps, can be reformulated in
terms of analytic sets. In these reformulations additional
phenomena may emerge, while for the proofs new methods are
necessary. (As an example we can mention the boundary properties of
conformal maps of domains in the plane, which may be studied by
means of the boundary properties of the graphs of such maps.) The
theory of complex analytic sets is a relatively young branch of
complex analysis. Basically, it was developed to fulfill the need
of the theory of functions of several complex variables, but for a
long time its development was, so to speak, within the framework of
algebraic geometry - by analogy with algebraic sets. And although
at present the basic methods of the theory of analytic sets are
related with analysis and geometry, the foundations of the theory
are expounded in the purely algebraic language of ideals in
commutative algebras. In the present book I have tried to eliminate
this noncorrespondence and to give a geometric exposition of the
foundations of the theory of complex analytic sets, using only
classical complex analysis and a minimum of algebra (well-known
properties of polynomials of one variable). Moreover, it must of
course be taken into consideration that algebraic geometry is one
of the most important domains of application of the theory of
analytic sets, and hence a lot of attention is given in the present
book to algebraic sets.
From the reviews: "... In sum, the volume under review is the first quarter of an important work that surveys an active branch of modern mathematics. Some of the individual articles are reminiscent in style of the early volumes of the first Ergebnisse series and will probably prove to be equally useful as a reference; ...for the appropriate reader, they will be valuable sources of information about modern complex analysis." Bulletin of the Am.Math.Society, 1991"... This remarkable book has a helpfully informal style, abundant motivation, outlined proofs followed by precise references, and an extensive bibliography; it will be an invaluable reference and a companion to modern courses on several complex variables." ZAMP, Zeitschrift für Angewandte Mathematik und Physik, 1990
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