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  Gravitational waveform accuracy requirements for future ground-based detectors

Pürrer, M., & Haster, C.-J. (2020). Gravitational waveform accuracy requirements for future ground-based detectors. Physical Review Research, 2(2):. doi:10.1103/PhysRevResearch.2.023151.

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アイテムのパーマリンク: https://hdl.handle.net/21.11116/0000-0005-78E1-6 版のパーマリンク: https://hdl.handle.net/21.11116/0000-0007-CB8E-5
資料種別: 学術論文
その他 : Ready for what lies ahead? -- Gravitational waveform accuracy requirements for future ground based detectors

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1912.10055.pdf (プレプリント), 3MB
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https://hdl.handle.net/21.11116/0000-0005-78E3-4
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1912.10055.pdf
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PhysRevResearch.2.023151.pdf (出版社版), 5MB
ファイルのパーマリンク:
https://hdl.handle.net/21.11116/0000-0007-CB8D-6
ファイル名:
PhysRevResearch.2.023151.pdf
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作成者

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 作成者:
Pürrer, Michael1, 著者           
Haster, Carl-Johan, 著者
所属:
1Astrophysical and Cosmological Relativity, AEI-Golm, MPI for Gravitational Physics, Max Planck Society, ou_1933290              

内容説明

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キーワード: General Relativity and Quantum Cosmology, gr-qc
 要旨: Future third generation (3G) ground-based GW detectors, such as the Einstein
Telescope and Cosmic Explorer, will have unprecedented sensitivities enabling
studies of the entire population of stellar mass binary black hole coalescences
in the Universe. To infer binary parameters from a GW signal we require
accurate models of the gravitational waveform as a function of black hole
masses, spins, etc. Such waveform models are built from numerical relativity
(NR) simulations and/or semi-analytical expressions in the inspiral. We
investigate the limits of the current waveform models and study at what
detector sensitivity these models will yield unbiased parameter inference for
loud ''golden'' binary black hole systems, what biases we can expect beyond
these limits, and what implications such biases will have for GW astrophysics.
For 3G detectors we find that the mismatch error for semi-analytical models
needs to be reduced by at least \emph{three orders of magnitude} and for NR
waveforms by \emph{one order of magnitude}. In addition, we show that for a
population of one hundred high mass precessing binary black holes, measurement
errors sum up to a sizable population bias, about 10 -- 30 times larger than
the sum of 90\% credible intervals for key astrophysical parameters.
Furthermore we demonstrate that the residual signal between the GW data
recorded by a detector and the best fit template waveform obtained by parameter
inference analyses can have significant SNR ratio. This coherent power left in
the residual could lead to the observation of erroneous deviations from general
relativity. To address these issues and be ready to reap the scientific
benefits of 3G GW detectors in the 2030s, waveform models that are
significantly more physically complete and accurate need to be developed in the
next decade along with major advances in efficiency and accuracy of NR codes.

資料詳細

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言語:
 日付: 2019-12-202020
 出版の状態: 出版
 ページ: 30 pages, 15 figures
 出版情報: -
 目次: -
 査読: -
 識別子(DOI, ISBNなど): arXiv: 1912.10055
URI: http://arxiv.org/abs/1912.10055
DOI: 10.1103/PhysRevResearch.2.023151
 学位: -

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出版物 1

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出版物名: Physical Review Research
種別: 学術雑誌
 著者・編者:
所属:
出版社, 出版地: College Park, Maryland, United States : American Physical Society (APS)
ページ: - 巻号: 2 (2) 通巻号: 023151 開始・終了ページ: - 識別子(ISBN, ISSN, DOIなど): ISSN: 2643-1564
CoNE: https://pure.mpg.de/cone/journals/resource/2643-1564