September 24, 2019
1:50PM - 2:50PM
Math Tower 154
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2019-09-24 13:50:00
2019-09-24 14:50:00
PDE Seminar - Juhi Jang
Title: Newtonian gravitational collapse beyond dust dynamics
Speaker: Juhi Jang, University of South California
Abstract: The classical model of an isolated self-gravitation gaseous star is the Euler-Poisson system with a polytropic pressure law. For any adiabatic exponent between 1 and 4/3, we construct an infinite-dimensional family of collapsing solutions to the Euler-Poisson system whose density is in general space inhomogeneous and undergoes gravitational blowup along a prescribed space-time surface, with continuous mass absorption at the origin. The leading order singular behavior is described by an explicit collapsing solution of the pressureless Euler-Poisson system.
Seminar URL: https://research.math.osu.edu/pde/
Math Tower 154
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ascwebservices@osu.edu
America/New_York
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Add to Calendar
2019-09-24 13:50:00
2019-09-24 14:50:00
PDE Seminar - Juhi Jang
Title: Newtonian gravitational collapse beyond dust dynamics
Speaker: Juhi Jang, University of South California
Abstract: The classical model of an isolated self-gravitation gaseous star is the Euler-Poisson system with a polytropic pressure law. For any adiabatic exponent between 1 and 4/3, we construct an infinite-dimensional family of collapsing solutions to the Euler-Poisson system whose density is in general space inhomogeneous and undergoes gravitational blowup along a prescribed space-time surface, with continuous mass absorption at the origin. The leading order singular behavior is described by an explicit collapsing solution of the pressureless Euler-Poisson system.
Seminar URL: https://research.math.osu.edu/pde/
Math Tower 154
Department of Mathematics
math@osu.edu
America/New_York
public
Title: Newtonian gravitational collapse beyond dust dynamics
Speaker: Juhi Jang, University of South California
Abstract: The classical model of an isolated self-gravitation gaseous star is the Euler-Poisson system with a polytropic pressure law. For any adiabatic exponent between 1 and 4/3, we construct an infinite-dimensional family of collapsing solutions to the Euler-Poisson system whose density is in general space inhomogeneous and undergoes gravitational blowup along a prescribed space-time surface, with continuous mass absorption at the origin. The leading order singular behavior is described by an explicit collapsing solution of the pressureless Euler-Poisson system.
Seminar URL: https://research.math.osu.edu/pde/