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About
President
Governance
Partner Institutions
Visit
People
Management
Faculty
Postdocs
Visiting Scholars
Administration
Academic Support
Research
Research Groups
Courses
Seminars
Journals
Join Us
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Postdocs
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Events
Conferences
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Forum
Life @ BIMSA
Accommodation
Transportation
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News
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Qiuzhen College, Tsinghua University
Yau Mathematical Sciences Center, Tsinghua University (YMSC)
Tsinghua Sanya International  Mathematics Forum (TSIMF)
Shanghai Institute for Mathematics and  Interdisciplinary Sciences (SIMIS)
Hetao Institute of Mathematics and Interdisciplinary Sciences
BIMSA > Algebra Seminar Algebra Seminar Entropy of the Serre functor for partially wrapped Fukaya categories of surfaces with stops
Entropy of the Serre functor for partially wrapped Fukaya categories of surfaces with stops
Organizer
Yu Qiu
Speaker
Wen Chang
Time
Sunday, April 19, 2026 2:00 PM - 3:00 PM
Venue
A3-4-101
Online
Zoom 815 762 8413 (BIMSA)
Abstract
I will talk about the categorical entropy of the Serre functor for partially wrapped Fukaya categories of graded surfaces with stops, as well as for perfect derived categories of homologically smooth graded gentle algebras (to which the aforementioned Fukaya categories are equivalent). We prove that the entropy of the Serre functor is a piecewise linear function determined by the winding numbers of the surface’s boundary components and the number of stops on each component. Specifically, the function takes different linear forms for non-negative and non-positive arguments, with slopes related to the minimum and maximum values derived from the ratio of each boundary component’s winding number to its stop count. We further derive the corresponding upper and lower Serre dimensions. Additionally, for ungraded homologically smooth gentle algebras, we establish a Gromov–Yomdin-like equality, linking the categorical entropy of the Serre functor to the natural logarithm of the spectral radius of the Coxeter transformation. The talk is based on the preprint arXiv:2508.14860, which is joint with A. Elagin and S. Schroll.
Beijing Institute of Mathematical Sciences and Applications
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