Compact Closed 2-Categories: Duality, Enrichment, and Strictification

David N Yetter , Juan Orendain , Nick Gurski
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Compact Closed 2-Categories: Duality, Enrichment, and Strictification

David N Yetter , Juan Orendain , Nick Gurski
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274 PAGESANGLAIS

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  • Date de publication : Sep 09, 2025
  • Langue : anglais
  • Nombre de pages : 274
  • Éditeur : De Gruyter
  • ISBN : 9783119148153
  • Dimensions : 6.692913385" W x 1.0" L x 9.448818897" H

Nick Gurski is currently an Associate Professor in the Department of Mathematics, Applied Mathematics and Statistics at Case Western Reserve University. He received his PhD in 2006 from the University of Chicago under the supervision of Peter May, and he held an NSF Postdoctoral Fellowship at Yale University with Mikhail Kapranov. His work is in two- and three-dimensional category theory, with a particular emphasis on applications in homotopy theory. Recent work has focused on symmetric monoidal structures and invertible objects, including a proof of the two-dimensional stable homotopy hypothesis.

David Yetter is a University Distinguished Professor in the Department of Mathematics at Kansas State University. He received his PhD in 1984 from the University of Pennsylvania under the supervision of Peter Freyd, with whom he was subsequently one of the groups which independently discovered the HOMFLY-PT polynomial invariant of classical knot and links. He is the author of over 50 papers, largely in topological quantum field theory, but covering areas ranging from topos theory to knot theory and from classical geometry to operator algebras.

Juan Orendain is a Visiting Assistant Professor in the Department of Mathematics, Applied Mathematics and Statistics at Case Western Reserve University. He received his PhD in 2014 from the National Autonomous University of Mexico under the supervision of Francisco Raggi and Jose Rios. He has been a postdoctoral fellow at the University of Tokyo, with Yasuyuki Kawahigashi, and the National University of Mexico, with Robert Oeckl. His work is in two-dimensional category theory, with an emphasis on the study of symmetric monoidal equipments, and their applications to mathematical physics. Recent work has focused on categorical models of higher lattice gauge theories and quantum theories.

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