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Superschool on derived categories an...
~
(1998 :)
Superschool on derived categories and d-branesEdmonton, Canada, July 17-23, 2016 /
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Superschool on derived categories and d-branesedited by Matthew Ballard ... [et al.].
其他題名:
Edmonton, Canada, July 17-23, 2016 /
其他作者:
Ballard, Matthew.
團體作者:
出版者:
Cham :Springer International Publishing :2018.
面頁冊數:
ix, 260 p. :ill., digital ;24 cm.
Contained By:
Springer eBooks
標題:
Mirror symmetryCongresses.
電子資源:
http://dx.doi.org/10.1007/978-3-319-91626-2
ISBN:
9783319916262$q(electronic bk.)
Superschool on derived categories and d-branesEdmonton, Canada, July 17-23, 2016 /
Superschool on derived categories and d-branes
Edmonton, Canada, July 17-23, 2016 /[electronic resource] :edited by Matthew Ballard ... [et al.]. - Cham :Springer International Publishing :2018. - ix, 260 p. :ill., digital ;24 cm. - Springer proceedings in mathematics & statistics,v.2402194-1009 ;. - Springer proceedings in mathematics & statistics ;v.19..
Abelian and Triangulated Categories (C. Hanratty) -- Derived Categories and Derived Functors (N.K. Chidambaram) -- Introduction to Quivers (M. Chinen) -- Semi-orthogonal Decompositions of Derived Categories (Y. Liu) -- Introduction to Bridgeland Stability Conditions (R. Tramel) -- A Brief Introduction to Geometric Invariant Theory (N. Grieve) -- Birational Geometry and Derived Categories (C. Diemer) -- Introduction to Mirror Symmetry (R. Hughes) -- Batyrev Mirror Symmetry (M. Talpo) -- Differential Graded Categories (A.A. Takeda) -- Introduction to Symplectic Geometry and Fukaya Category (A.Z. Zhang) -- Homological Mirror Symmetry (A. Harder) -- The Syz Conjecture Via Homological Mirror Symmetry (D. Bejleri) -- The Derived Category of Coherent Sheaves and B-model Topological String Theory (S. Pietromonaco) -- Introduction to Topological String Theories (K. Osuga) -- An Overview of B-branes in Gauged Linear Sigma Models (N. Ishtiaque)
This book consists of a series of introductory lectures on mirror symmetry and its surrounding topics. These lectures were provided by participants in the PIMS Superschool for Derived Categories and D-branes in July 2016. Together, they form a comprehensive introduction to the field that integrates perspectives from mathematicians and physicists alike. These proceedings provide a pleasant and broad introduction into modern research topics surrounding string theory and mirror symmetry that is approachable to readers new to the subjects. These topics include constructions of various mirror pairs, approaches to mirror symmetry, connections to homological algebra, and physical motivations. Of particular interest is the connection between GLSMs, D-branes, birational geometry, and derived categories, which is explained both from a physical and mathematical perspective. The introductory lectures provided herein highlight many features of this emerging field and give concrete connections between the physics and the math. Mathematical readers will come away with a broader perspective on this field and a bit of physical intuition, while physicists will gain an introductory overview of the developing mathematical realization of physical predictions.
ISBN: 9783319916262$q(electronic bk.)
Standard No.: 10.1007/978-3-319-91626-2doiSubjects--Topical Terms:
822416
Mirror symmetry
--Congresses.
LC Class. No.: QC174.17.S9
Dewey Class. No.: 539.7258
Superschool on derived categories and d-branesEdmonton, Canada, July 17-23, 2016 /
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This book consists of a series of introductory lectures on mirror symmetry and its surrounding topics. These lectures were provided by participants in the PIMS Superschool for Derived Categories and D-branes in July 2016. Together, they form a comprehensive introduction to the field that integrates perspectives from mathematicians and physicists alike. These proceedings provide a pleasant and broad introduction into modern research topics surrounding string theory and mirror symmetry that is approachable to readers new to the subjects. These topics include constructions of various mirror pairs, approaches to mirror symmetry, connections to homological algebra, and physical motivations. Of particular interest is the connection between GLSMs, D-branes, birational geometry, and derived categories, which is explained both from a physical and mathematical perspective. The introductory lectures provided herein highlight many features of this emerging field and give concrete connections between the physics and the math. Mathematical readers will come away with a broader perspective on this field and a bit of physical intuition, while physicists will gain an introductory overview of the developing mathematical realization of physical predictions.
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