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Dark matter or new physics: A direct comparison among competing explanations of galactic rotation curves.

机译:暗物质或新物理学:星系自转曲线的竞争解释之间的直接比较。

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摘要

Galactic rotation curves provide some of the strongest evidence for the existence of dark matter at galactic scales [1]. However, several alternative explanations are also able to reproduce the observed rotation curves by modifying Newtonian gravity: these include Modified Newtonian Dynamics [2], conformal gravity [3], and the exponential potential [4,5]. A direct comparison of the predictions of various models is desirable, but challenging due to the differences in the formulation and implementation of these models. In this dissertation, we develop a single program that allows predicted rotation curves for dark matter, MOND, and conformal gravity to be directly compared. Since this program, the Parallel Rotation Curve Simulator (PRoCSi), compares all models by utilizing the same routines for integration, interpolation, density model calculation, and related functions, there are no "hidden" variables that can arise when the output from two separate programs are compared. This eliminates many possible implementation-dependent variables from the comparison, allowing for a more robust analysis of the physics of the problem. Extensive testing with several independent methods is used to establish the computational correctness of PRoCSi [6,7]. Formal error analysis is also conducted for the complete rotation curve fitting process. The PRoCSi curves for the dark matter pseudo-isothermal halo, Modified Newtonian Dynamics, and conformal gravity are compared to the results of other authors [8,9], and new curves are determined from a detailed study of the available data for a sample of 10 spiral galaxies. Finally, the implications for the future of rotation curve fitting are discussed.
机译:银河系旋转曲线为银河系尺度上暗物质的存在提供了最有力的证据[1]。但是,也可以通过修改牛顿重力来重现观察到的旋转曲线的几种替代解释:包括修改的牛顿动力学[2],共形引力[3]和指数势[4,5]。需要对各种模型的预测结果进行直接比较,但由于这些模型的制定和实施存在差异,因此具有挑战性。在本文中,我们开发了一个程序,可以直接比较暗物质,MOND和共形重力的预测旋转曲线。由于此程序(平行旋转曲线模拟器(PRoCSi))通过使用相同的例程进行积分,插值,密度模型计算和相关功能来比较所有模型,因此当两个单独的输出产生时就不会出现“隐藏”变量。程序进行比较。这样可以从比较中消除许多可能的与实现相关的变量,从而可以更可靠地分析问题的物理性质。使用几种独立方法进行的广泛测试可以确定PRoCSi的计算正确性[6,7]。还对整个旋转曲线拟合过程进行形式误差分析。将暗物质拟等温晕,修正牛顿动力学和共形引力的PRoCSi曲线与其他作者的结果进行了比较[8,9],并根据对样品的可用数据的详细研究确定了新曲线。 10个旋涡星系。最后,讨论了旋转曲线拟合的未来意义。

著录项

  • 作者

    Coy, Jennifer J.;

  • 作者单位

    Purdue University.;

  • 授予单位 Purdue University.;
  • 学科 Physics Astronomy and Astrophysics.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 303 p.
  • 总页数 303
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 天文学;
  • 关键词

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