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Lectures on Hilbert Schemes of Points on Surfaces
Hiraku Nakajima
€ 104.08
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Description for Lectures on Hilbert Schemes of Points on Surfaces
Paperback. It has been realized that Hilbert schemes originally studied in algebraic geometry are closely related to several branches of mathematics, such as singularities, symplectic geometry, representation theory - even theoretical physics. This book reflects this feature of Hilbert schemes. Series: University Lecture Series. Num Pages: 132 pages, bibliography, index. BIC Classification: PBMW; PBP. Category: (P) Professional & Vocational; (UP) Postgraduate, Research & Scholarly. Dimension: 252 x 180 x 8. Weight in Grams: 264.
The Hilbert scheme $X^{[n]}$ of a surface $X$ describes collections of $n$ (not necessarily distinct) points on $X$. More precisely, it is the moduli space for $0$-dimensional subschemes of $X$ of length $n$. Recently it was realized that Hilbert schemes originally studied in algebraic geometry are closely related to several branches of mathematics, such as singularities, symplectic geometry, representation theory - even theoretical physics.The discussion in the book reflects this feature of Hilbert schemes. For example, a construction of the representation of the infinite dimensional Heisenberg algebra (i.e., Fock space) is presented. This representation has been studied extensively in the literature in connection with affine Lie algebras, conformal field theory, etc. However, the construction presented in this volume is completely unique and provides the unexplored link between geometry and representation theory. The book offers a nice survey of current developments in this rapidly growing subject. It is suitable as a text at the advanced graduate level.
Product Details
Publisher
American Mathematical Society United States
Number of pages
132
Format
Paperback
Publication date
1999
Series
University Lecture Series
Condition
New
Place of Publication
Providence, United States
ISBN
9780821819562
SKU
V9780821819562
Shipping Time
Usually ships in 7 to 11 working days
Ref
99-1
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