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Week of February 11, 2024

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February 12, 2024
Group Actions, Geometry and Dynamics [3] Dynamics of composite symplectic Dehn Twist. Wendy Wang - University of Chicago and Tsinghua University 4:00pm -
KT 205
February 14, 2024
Applied Mathematics [4] Fast and accurate algorithms for waves in multilayered media MinHyung Cho - UMass Lowell 3:00pm -
LOM 214
February 15, 2024
Analysis [5] A new proof for the nonlinear stability of slowly-rotating Kerr-de Sitter Allen Juntao Fang - Princeton University- University of Munster 4:00pm -
KT 801
February 16, 2024
Friday Morning Seminar [6] Friday Morning Seminar 10:00am -
KT801

Abstracts

Week of February 11, 2024

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February 12, 2024
Group Actions, Geometry and Dynamics [3] Dynamics of composite symplectic Dehn Twist. 4:00pm -
KT 205
On Riemann surfaces, pseudo-Anosov maps constitute the majority of the mapping class group and these maps display many interesting dynamical properties. One way to generate pseudo-Anosov maps is by compositions of Dehn twists. In this talk, I’ll show that on symplectic manifolds, we can also compose symplectic Dehn twists to obtain maps that display hyperbolic properties including positive topological entropy, stable and unstable laminations, and exponential growth of the Floer homology group. This represents joint work with Wenmin Gong and Jinxin Xue.
 
February 14, 2024
Applied Mathematics [4] Fast and accurate algorithms for waves in multilayered media 3:00pm -
LOM 214

Many modern electronic/optical devices rely on waves such as solar cells, antennae, radar, and lasers. These devices are mostly built on a patterned layered structure. For optimizing and characterizing these devices, numerical simulations play a crucial role. Two integral equation methods will be presented. Firstly, we developed a robust and fast computational method based on boundary integral equations for the Helmholtz equation in periodically patterned multilayered media. This method uses near- and far-field decomposition to avoid using the quasi-periodic Green’s function. By construction, far-field contribution can be compressed using Schur complement with minimal computational cost. Both the 2-D and 3-D numerical results will be presented. Secondly, two of the main challenges in wave simulation in layered media using layered media Green’s function will be discussed. The layered media Green’s function is represented by Sommerfeld integrals and evaluation of the layered media Green’s function for a given density function is accelerated by adapting the free-space fast multipole method by compressing the Sommerfeld integrals with multipole expansion with transformed basis. In the low-frequency regime, the convergence of multipole and local expansion follows the free-space method results in O(N) algorithm. Additionally, a slow convergence issue of Sommerfeld integral representation of layered media Green’s function when the target and source points are close to each other is overcome with a mathematically equivalent directional representation of Sommerfeld integrals.

February 15, 2024
Analysis [5] A new proof for the nonlinear stability of slowly-rotating Kerr-de Sitter 4:00pm -
KT 801

Black hole stability has seen numerous important developments in the past decade. In my talk, I will focus on the nonlinear stability of the slowly-rotating Kerr-de Sitter family. Nonlinear stability of the slowly-rotating Kerr-de Sitter family was first proven by Hintz and Vasy in 2016 using microlocal techniques. In my talk, I will present a new proof of the nonlinear stability of slowly-rotating Kerr-de Sitter spacetimes that utilizes the vectorfield method to uncover the high-frequency spectral gap in Kerr-de Sitter, connecting the physical-space and frequency-space approaches. The proof also uses a new scheme to prove nonlinear stability, avoiding Nash-Moser.

February 16, 2024
Friday Morning Seminar [6] Friday Morning Seminar 10:00am -
KT801

A relaxed-pace seminar on impromptu subjects related to the interests of the audience.

Everyone is welcome.

The subjects are geometry, probability, combinatorics, dynamics, and more!

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Links
[1] https://calendar.math.yale.edu/list/calendar/grid/week/2024-W06 [2] https://calendar.math.yale.edu/list/calendar/grid/week/2024-W08 [3] https://calendar.math.yale.edu/seminars/group-actions-geometry-and-dynamics [4] https://calendar.math.yale.edu/seminars/applied-mathematics [5] https://calendar.math.yale.edu/seminars/analysis [6] https://calendar.math.yale.edu/seminars/friday-morning-seminar [7] https://calendar.math.yale.edu/list/calendar/grid/week/abstract/2024-W06 [8] https://calendar.math.yale.edu/list/calendar/grid/week/abstract/2024-W08