基于fisher矩阵的引力波参数估计软件,超越高斯近似

IF 1.9 4区 物理与天体物理 Q2 ASTRONOMY & ASTROPHYSICS Astronomy and Computing Pub Date : 2023-10-01 DOI:10.1016/j.ascom.2023.100759
J.M.S. de Souza , R. Sturani
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引用次数: 0

摘要

我们介绍了GWDALI,一个新的基于fisher矩阵的python软件,它计算似然梯度来预测观测紧凑二元聚并的任意地球引力波探测器网络的参数估计精度。关于类似软件的主要新特点是评估参数不确定性超出费雪矩阵近似,使用似然(DALI)的导数近似。该软件可选使用LSC算法库LAL和随机抽样算法Bilby,可用于精确或近似似然函数的蒙特卡罗抽样。作为一个例子,我们展示了对选定的天体物理参数的实际可能性和各种导数近似的估计精度测量的比较,这在费雪矩阵不可逆时特别有用。
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GWDALI: A Fisher-matrix based software for gravitational wave parameter-estimation beyond Gaussian approximation

We introduce GWDALI, a new Fisher-matrix, python based software that computes likelihood gradients to forecast parameter-estimation precision of arbitrary network of terrestrial gravitational wave detectors observing compact binary coalescences. The main new feature with respect to analogous software is to assess parameter uncertainties beyond Fisher-matrix approximation, using the derivative approximation for Likelihood (DALI). The software makes optional use of the LSC algorithm library LAL and the stochastic sampling algorithm Bilby, which can be used to perform Monte-Carlo sampling of exact or approximate likelihood functions. As an example we show comparison of estimated precision measurement of selected astrophysical parameters for both the actual likelihood, and for a variety of its derivative approximations, which turn out particularly useful when the Fisher matrix is not invertible.

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来源期刊
Astronomy and Computing
Astronomy and Computing ASTRONOMY & ASTROPHYSICSCOMPUTER SCIENCE,-COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS
CiteScore
4.10
自引率
8.00%
发文量
67
期刊介绍: Astronomy and Computing is a peer-reviewed journal that focuses on the broad area between astronomy, computer science and information technology. The journal aims to publish the work of scientists and (software) engineers in all aspects of astronomical computing, including the collection, analysis, reduction, visualisation, preservation and dissemination of data, and the development of astronomical software and simulations. The journal covers applications for academic computer science techniques to astronomy, as well as novel applications of information technologies within astronomy.
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