Magnetodynamics Inside and Outside Magnetars

Magnetodynamics Inside and Outside Magnetars
Xinyu Li, Xinyu Li
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Last edited by MARC Bot
December 16, 2022 | History

Magnetodynamics Inside and Outside Magnetars

The ultra-strong magnetic fields of magnetars have profound implications for their radiative phenomena. We study the dynamics of strong magnetic fields inside and outside magnetars. Inside the magnetar, the strong magnetic stress can break the crust and trigger plastic failures. The interaction between magnetic fields and plastic failures is studied in two scenarios: 1. Internal Hall waves launched from the core-crust interface can initiate plastic failures and lead to X-ray outbursts. 2. External Alfven waves produced by giant flares can also initiate crustal plastic failures which dissipate the waves and give rise to delayed thermal afterglow. The crustal dissipation of Alfven waves competes with the magnetospheric dissipation outside the magnetar. Using a high order simulation of Force-Free Electrodynamics (FFE), we found that the magnetospheric dissipation of Alfven waves is generally slow and most wave energy will dissipate inside the magnetar.

Publish Date
Language
English

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Edition Notes

Department: Physics.

Thesis advisor: Andrei M. Beloborodov.

Thesis (Ph.D.)--Columbia University, 2019.

Published in
[New York, N.Y.?]

The Physical Object

Pagination
1 online resource.

Edition Identifiers

Open Library
OL44080940M
OCLC/WorldCat
1124979429

Work Identifiers

Work ID
OL32329035W

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