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(gravitational wave*) OR gravitationswelle*

    Testing theories of Gravitation with the Interstellar Probe Radio Experiment

    Michael Plumaris / Fabrizio De Marchi / Gael Cascioli et al. | NTRS | 2023
    ) and gravitational wave detection (Abbott et al., Jun 2021). Extending ranging measurement acquisition to 20 years improves the results tenfold ...

    Research Campaign: Lunar Gravitational-wave Antenna

    Lorella Angelini / Francesca Badaracco / Stefano Benetti et al. | NTRS | 2022
    The Lunar Gravitational-wave Antenna (LGWA) is a mission conceived as a network of stations to measure the vibrations of the Moon caused by ...

    Independent Reliability Assessment of the NASA GSFC Laser Transmitter for the LISA Program

    U. N. Singh / S. Horan / C. Antill et al. | NTIS | 2022
    each spacecraft, provides a tool for scientists to directly detect gravitational waves generated from various astronomical phenomena in a ...

    Geodetic Investigations of the Mission Concept MAGIC to Reveal Callisto’s Internal Structure

    Antonio Genova / David E Smith / Robin Canup et al. | NTRS | 2022
    -wavelength gravity anomalies afford powerful constraints on internal differentiation and the properties of the hydrosphere (water and ice ...

    Lunar Gravitational-wave Detection

    Jan Harms / Lorella Angelini / Michael Coughlin et al. | NTRS | 2021
    Lunar gravitational-wave (GW) detection has been under consideration since Apollo 17 when the Lunar Surface Gravimeter developed under the ...

    Marshall Space Flight Center Faculty Fellowship Program

    N. F. Six / G. Karr | NTRS | 2021
    heat leak into a cryogen tank, as in most vehicle systems. One of the scientists worked on a proposed space-based gravitational wave ...

    Searching for the Origin of the High-Energy Emission from GRB 170817A

    D. Kocevski | NTIS | 2019
    Keywords: Gravitational waves

    First Electromagnetic Counterpart to a Gravitational-Wave Signal

    D. Kocevski | NTIS | 2018
    Keywords: Gravitational waves

    Discovery of GW170817

    T. B. Littenberg | NTIS | 2018
    Keywords: Gravitational waves

    Lynx Mission Concept: 2017 Accomplishments and 2018 Goals

    J. A. Gaskin | NTIS | 2018
    Keywords: Gravitational waves

    Lynx: Simply Designed for Maximum Science Return

    J. Gaskin | NTIS | 2018
    Keywords: Gravitational waves

    ST7 Disturbance Reduction System (DRS) Colloid Micronewton Thruster Performance and Control Algorithm Model Simulation Validation in Flight

    Hruby, Vlad / Hsu, Oscar / Maghami, Peiman et al. | NTRS | 2018
    . LISA Pathfinder was a technology demonstration mission for ESA’s LISA gravitational wave observatory, currently in Phase A with a launch date ...

    In-Flight Verification and Validation of Colloid Microthruster Performance

    Hsu, Oscar / Maghami, Peiman / Thorpe, James Ira et al. | NTRS | 2018
    drag-free operation of the LPF spacecraft, which will be necessary for future gravity wave observatories such as ESA’s Laser Interferometer ...

    Gravitational Wave Astronomy

    Littenberg, Tyson B. | NTRS | 2017
    Keywords: Gravitational Waves

    Space-Based Gravitational Wave Data Analysis Development

    Page, Jessica / Littenberg, Tyson | NTRS | 2017
    Keywords: Space Based Gravitational

    Searching for EM Signals Coincident with aLIGO GW Candidates Using the Fermi GBM

    T. B. Littenberg | NTIS | 2017
    Keywords: Gravitational waves

    Light from Merging Neutron Stars

    C. Wilson-Hodge | NTIS | 2017
    Keywords: Gravitational waves

    GRB 170818A and Future Missions

    C. A. Wilson-Hodge | NTIS | 2017
    Keywords: Gravitational waves