Filament based plasma

Author:

Padilla Marcel1,Gross Oliver1,Knöppel Felix1,Chern Albert2,Pinkall Ulrich1,Schröder Peter3

Affiliation:

1. TU Berlin

2. UC San Diego

3. Caltech

Abstract

Simulation of stellar atmospheres, such as that of our own sun, is a common task in CGI for scientific visualization, movies and games. A fibrous volumetric texture is a visually dominant feature of the solar corona---the plasma that extends from the solar surface into space. These coronal fibers can be modeled as magnetic filaments whose shape is governed by the magnetohydrostatic equation. The magnetic filaments provide a Lagrangian curve representation and their initial configuration can be prescribed by an artist or generated from magnetic flux given as a scalar texture on the sun's surface. Subsequently, the shape of the filaments is determined based on a variational formulation. The output is a visual rendering of the whole sun. We demonstrate the fidelity of our method by comparing the resulting renderings with actual images of our sun's corona.

Funder

Deutsche Forschungsgemeinschaft

Publisher

Association for Computing Machinery (ACM)

Subject

Computer Graphics and Computer-Aided Design

Reference59 articles.

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3. B. Angles , D. Rebain , M. Macklin , B. Wyvill , L. Barthe , J. P. Lewis , J. von der Pahlen, S. Izadi, J. Valentin, S. Bouaziz, and A. Tagliasacchi. 2019. VIPER: Volume Invariant Position-Based Elastic Rods . Proc. ACM Comput. Graph. Interact. Tech. 2 , 2 ( 2019 ), 19:1--19:26. B. Angles, D. Rebain, M. Macklin, B. Wyvill, L. Barthe, J. P. Lewis, J. von der Pahlen, S. Izadi, J. Valentin, S. Bouaziz, and A. Tagliasacchi. 2019. VIPER: Volume Invariant Position-Based Elastic Rods. Proc. ACM Comput. Graph. Interact. Tech. 2, 2 (2019), 19:1--19:26.

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Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Plasma knots;Physics Letters A;2023-08

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