Search Results - "Hughes, Scott A."

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  1. 1

    Rapid Generation of Fully Relativistic Extreme-Mass-Ratio-Inspiral Waveform Templates for LISA Data Analysis by Chua, Alvin J K, Katz, Michael L, Warburton, Niels, Hughes, Scott A

    Published in Physical review letters (05-02-2021)
    “…The future space mission LISA will observe a wealth of gravitational-wave sources at millihertz frequencies. Of these, the extreme-mass-ratio inspirals of…”
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    Tidal Resonance in Extreme Mass-Ratio Inspirals by Bonga, Béatrice, Yang, Huan, Hughes, Scott A.

    Published in Physical review letters (06-09-2019)
    “…We describe a new class of resonances for extreme mass-ratio inspirals (EMRIs): tidal resonances, induced by the tidal field of nearby stars or stellar-mass…”
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    Gravitational radiation reaction and inspiral waveforms in the adiabatic limit by HUGHES, Scott A, DRASCO, Steve, FLANAGAN, Eanna E, FRANKLIN, Joel

    Published in Physical review letters (10-06-2005)
    “…We describe progress evolving an important limit of binaries in general relativity: stellar mass compact objects spiraling into much larger black holes. Such…”
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    Golden Binary Gravitational-Wave Sources: Robust Probes of Strong-Field Gravity by Hughes, Scott A, Menou, Kristen

    Published in The Astrophysical journal (20-04-2005)
    “…Space-borne gravitational-wave interferometers such as LISA will detect the gravitational wave (GW) signal from the inspiral, plunge, and ringdown phases of…”
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    Learning about Black Hole Binaries from their Ringdown Spectra by Hughes, Scott A., Apte, Anuj, Khanna, Gaurav, Lim, Halston

    Published in Physical review letters (17-10-2019)
    “…The coalescence of two black holes generates gravitational waves that carry detailed information about the properties of those black holes and their binary…”
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    Gravitational Waves from Merging Compact Binaries by Hughes, Scott A

    “…Largely motivated by the development of highly sensitive gravitational-wave detectors, our understanding of merging compact binaries and the gravitational…”
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    Using Gravitational-Wave Standard Sirens by Holz, Daniel E, Hughes, Scott A

    Published in The Astrophysical journal (10-08-2005)
    “…Gravitational waves (GWs) from supermassive binary black hole (BBH) in-spirals are potentially powerful standard sirens (the GW analog to standard candles; see…”
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    Modeling extreme mass ratio inspirals within the effective-one-body approach by Yunes, Nicolás, Buonanno, Alessandra, Hughes, Scott A, Miller, M Coleman, Pan, Yi

    Published in Physical review letters (05-03-2010)
    “…We present the first models of extreme-mass-ratio inspirals within the effective-one-body (EOB) formalism, focusing on quasicircular orbits into nonrotating…”
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    Localizing Coalescing Massive Black Hole Binaries with Gravitational Waves by Lang, Ryan N, Hughes, Scott A

    Published in The Astrophysical journal (20-04-2008)
    “…Massive black hole binary coalescences are prime targets for space-based gravitational wave (GW) observatories such as LISA. GW measurements can localize the…”
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    Exploring Short Gamma-ray Bursts as Gravitational-wave Standard Sirens by Nissanke, Samaya, Holz, Daniel E, Hughes, Scott A, Dalal, Neal, Sievers, Jonathan L

    Published in The Astrophysical journal (10-12-2010)
    “…Recent observations support the hypothesis that a large fraction of 'short-hard' gamma-ray bursts (SHBs) are associated with the inspiral and merger of compact…”
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    Resonantly enhanced and diminished strong-field gravitational-wave fluxes by Flanagan, Éanna E., Hughes, Scott A., Ruangsri, Uchupol

    “…The inspiral of a stellar mass (1 - 100M sub([middot in circle])) compact body into a massive (10 super(5) - 10 super(7) M sub([middot in circle])) black hole…”
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    Transgenic Mouse Model for Echovirus Myocarditis and Paralysis by Hughes, Scott A., Thaker, Harshwardhan M., Racaniello, Vincent R.

    “…Echoviruses have been implicated in multiple human disease syndromes, including aseptic meningitis, paralysis, and heart disease, but no animal model is…”
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    Fast and Fourier: extreme mass ratio inspiral waveforms in the frequency domain by Speri, Lorenzo, Katz, Michael L., Chua, Alvin J. K., Hughes, Scott A., Warburton, Niels, Thompson, Jonathan E., Chapman-Bird, Christian E. A., Gair, Jonathan R.

    “…Extreme Mass Ratio Inspirals (EMRIs) are one of the key sources for future space-based gravitational wave interferometers. Measurements of EMRI gravitational…”
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