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Alternative LISA-TAIJI networks

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arxiv 2105.00746 v2 pith:O6HFLGLU submitted 2021-05-03 gr-qc astro-ph.IM

classification gr-qcastro-ph.IM
keywords circinclinationearthlisalisa-taijialternativebestconfigurations
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

The space-borne gravitational wave (GW) detectors, LISA and TAIJI, are planned to be launched in the 2030s. The dual detectors with comparable sensitivities will form a network observing GW with significant advantages. In this work, we investigate the three possible LISA-TAIJI networks for the different location and orientation compositions of LISA orbit ($+60^\circ$ inclination and trailing the Earth by $20^\circ$) and alternative TAIJI orbit configurations including TAIJIp ($+60^\circ$ inclination and leading the Earth by $20^\circ$), TAIJIc ($+60^\circ$ inclination and co-located with LISA), TAIJIm ($-60^\circ$ inclination and leading the Earth by $20^\circ$). In the three LISA-TAIJI configurations, the LISA-TAIJIm network shows the best performance on the sky localization and polarization determination for the massive binary system due to their better complementary antenna pattern, and LISA-TAIJIc could achieve the best cross-correlation and observe the stochastic GW background with an optimal sensitivity.

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  1. Alternative LISA-TAIJI networks: polarization separation of the stochastic gravitational wave background

    gr-qc 2026-08 conditional novelty 5.0 of 10

    For stochastic gravitational wave backgrounds containing simultaneous tensor, vector, and scalar modes, the more inclined LISA-TAIJIm network separates polarization components substantially better than LISA-TAIJIp, al...

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