Kirill Serkh's Home Page
Associate
Professor of Mathematics and Computer Science,
University of Toronto
Research Interests:
Numerical analysis, Scientific computing, Partial differential equations,
Numerical linear algebra, Quadrature and approximation theory, Special
functions
Mailing Address:
Department of Mathematics
University of Toronto
40 St. George St, room 6290
Toronto, Ontario M5S 2E4
Canada
Office information:
Bahen Building
40 St. George St, room 6260
Contact information:
phone: (647) 793-5984
email: kserkh@math. toronto.edu
Selected Papers:
Mohan Zhao and Kirill Serkh.
On the Approximation of Singular Functions by Series of Noninteger Powers.
IMA J. Numer. Anal. 46.1 (2026): 572–622.
arXiv
Tech. Rep.
Data
Andreas A. Buchheit, Torsten Keßler, and Kirill Serkh.
On the Computation of Lattice
Sums without Translational Invariance.
Math. Comp. 94.355 (2025): 2533–2574.
arXiv
Code
Zewen Shen and Kirill Serkh.
On Polynomial Interpolation in the Monomial Basis.
SIAM J. Numer. Anal. 63.2 (2025): 469–494.
arXiv
Tech. Rep.
Zakaria Patel, Kirill Serkh.
Enhancing Image Layout Control with Loss-Guided
Diffusion Models. 2025 IEEE/CVF Winter Conference on Applications of
Computer Vision (WACV) , Tucson, AZ (Feb. 2025).
arXiv
Shukui Chen, Kirill Serkh, and James Bremer.
On the Adaptive Levin Method.
Numer. Math. 156 (2024): 1927–1985.
arXiv
Mohan Zhao and Kirill Serkh.
A Continuation Method for Fitting a Bandlimited Curve to
Points in the Plane.
Adv. Comput. Math. 50.74 (2024).
Code
arXiv
Tech. Rep.
Zewen Shen and Kirill Serkh.
Rapid Evaluation of Newtonian Potentials on Planar Domains.
SIAM J. Sci. Comput. 46.1 (2024): A609–A628.
Data
arXiv
Tech. Rep.
Seungbae Bang, Kirill Serkh, Oded Stein, and Alec Jacobson.
An Adaptive Fast-Multipole-Accelerated Hybrid Boundary Integral Equation
Method for Accurate Diffusion Curves.
SIGGRAPH Asia 2023 , Sydney, Australia (Dec. 2023), published in
ACM T. Graphic. 42.6 (2023):
1–28.
arXiv
Kirill Serkh and James Bremer.
Phase Function Methods for Second Order Inhomogeneous Linear Ordinary
Differential Equations.
J. Sci. Comput. 98.1 (2024): 14.
arXiv
Dawei Wang, Kirill Serkh, and Christina Christara.
A High-Order Deferred Correction Method for the Solution of Free Boundary
Problems using Penalty Iteration, with an Application to American Option
Pricing.
J. Comput. Appl. Math. 432 (2023): 115272.
arXiv
Tech. Rep.
James Garritano, Yuval Kluger, Vladimir Rokhlin, and Kirill Serkh.
On the Efficient Evaluation of the Azimuthal Fourier Components of the Green's Function for Helmholtz's Equation in Cylindrical Coordinates.
J. Comput. Phys. 471 (2022): 111585.
Code
arXiv
Tech. Rep.
Zewen Shen and Kirill Serkh.
On the Evaluation of the Eigendecomposition of the Airy Integral Operator.
App. Comput. Harmon. Anal. 57 (2022): 105–150.
arXiv
Tech. Rep.
Manas Rachh and Kirill Serkh.
On the Solution of the Stokes Equation on Regions with Corners.
Commun. Pur. Appl. Math. 73.11 (2020):
2295–2369.
arXiv
Tech. Rep.
Kirill Serkh.
On the Solution of Elliptic Partial Differential Equations on Regions
with Corners II: Detailed Analysis. App. Comput. Harmon.
Anal. 46.2 (2019): 250–287.
Tech. Rep.
Kirill Serkh and Vladimir Rokhlin.
On the Solution of the Helmholtz Equation on Regions with
Corners. PNAS 113.33 (2016): 9171–9176.
Tech. Rep.
Kirill Serkh and Vladimir Rokhlin.
On the Solution of Elliptic Partial Differential Equations on Regions
with Corners. J. Comput. Phys. 305 (2016): 150–171.
Tech. Rep.
Selected Preprints and Reports: