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A01=Áurea Casinhas Quintino
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Constrained Willmore Surfaces: Symmetries of a Möbius Invariant Integrable System

English

By (author): Áurea Casinhas Quintino

From Bäcklund to Darboux, this monograph presents a comprehensive journey through the transformation theory of constrained Willmore surfaces, a topic of great importance in modern differential geometry and, in particular, in the field of integrable systems in Riemannian geometry. The first book on this topic, it discusses in detail a spectral deformation, Bäcklund transformations and Darboux transformations, and proves that all these transformations preserve the existence of a conserved quantity, defining, in particular, transformations within the class of constant mean curvature surfaces in 3-dimensional space-forms, with, furthermore, preservation of both the space-form and the mean curvature, and bridging the gap between different approaches to the subject, classical and modern. Clearly written with extensive references, chapter introductions and self-contained accounts of the core topics, it is suitable for newcomers to the theory of constrained Wilmore surfaces. Many detailed computations and new results unavailable elsewhere in the literature make it also an appealing reference for experts. See more
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A01=Áurea Casinhas QuintinoAge Group_UncategorizedAuthor_Áurea Casinhas Quintinoautomatic-updateCategory1=Non-FictionCategory=PBMPCategory=PHUCOP=United KingdomDelivery_Delivery within 10-20 working daysLanguage_EnglishPA=In stockPrice_€50 to €100PS=Activesoftlaunch
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Product Details
  • Weight: 400g
  • Dimensions: 152 x 228mm
  • Publication Date: 10 Jun 2021
  • Publisher: Cambridge University Press
  • Publication City/Country: United Kingdom
  • Language: English
  • ISBN13: 9781108794428

About Áurea Casinhas Quintino

Áurea Casinhas Quintino is an Assistant Professor at NOVA University Lisbon and a member of CMAFcIO Center for Mathematics Fundamental Applications and Operations Research Faculty of Sciences of the University of Lisbon. Her research interests focus on integrable systems in Riemannian geometry.

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