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Coronagraphic time-delay interferometry: characterization and updated geometric properties

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arxiv 2406.00190 v1 pith:J6YSQZVC submitted 2024-05-31 gr-qc

classification gr-qc
keywords lisacoronagraphicanalysisdatavariablesbetabinariesfrequency
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

The Laser Interferometer Space Antenna (LISA) will be a space-borne gravitational wave (GW) detector to be launched in the next decade. Central to LISA data analysis is time-delay interferometry (TDI), a numerical procedure which drastically reduces otherwise overwhelming laser frequency noise. LISA data analysis is usually performed on sets of TDI variables, e.g. Michelson variables $(X, Y, Z)$ or quasiorthogonal variables $(A, E, T)$. We investigate a less standard TDI variable denoted $\kappa$ which depends on time, or frequency, and two parameters $(\beta, \lambda)$. This so-called coronagraphic TDI variable has the singular property of canceling GW signal when $(\beta, \lambda)$ tend to the sky position of the GW source. Thanks to this property, coronagraphic TDI has the potential to be an efficient model-agnostic method for sky localization of GW sources with LISA. Those characteristics make it relevant for low-latency searches and a possible glitch veto. Although briefly discussed in the literature, coronagraphic TDI has only been tested on theoretical grounds. In this paper we validate the applicability of $\kappa$ to sky localization of typical LISA sources, namely Galactic binaries (GBs) and massive black hole binaries (MBHBs), when considering a simplified LISA instrument. The goal of this paper is to pave the way for applications of coronagraphic TDI to practical LISA data analysis problems.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Distinguishing Monochromatic Signals in LISA and Taiji: Ultralight Dark Matter versus Gravitational Waves

    hep-ph 2025-06 conditional novelty 7.0 of 10

    Null-response interferometric channels can separate monochromatic ultralight dark matter signals from gravitational waves in LISA and Taiji, most effectively at high frequencies.

  2. Testing the Transverse Scalar Mode of Gravitational Quantum Field Theory with Taiji and LISA

    gr-qc 2026-07 conditional novelty 6.0 of 10

    A null-response channel for LISA/Taiji can isolate GQFT's breathing scalar mode, and orbital motion boosts the low-frequency response by about four orders of magnitude.

  3. Extraction of gravitational wave signals from LISA data in the presence of artifacts

    gr-qc 2024-11 conditional novelty 5.0 of 10

    Unmitigated glitches and gaps severely bias parameter recovery for galactic binaries and massive black hole binaries in LISA Data Challenge simulations; matched-filter masking plus smooth windowing reduces but does no...

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