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Chirp mass

  • Probing the Nuclear Equation of State from the Existence of a 2.6 M Neutron Star: the GW190814 Puzzle

    Probing the Nuclear Equation of State from the Existence of a 2.6 M Neutron Star: the GW190814 Puzzle

  • Recent Observations of Gravitational Waves by LIGO and Virgo Detectors

    Recent Observations of Gravitational Waves by LIGO and Virgo Detectors

  • Physics of Gravitational Waves

    Physics of Gravitational Waves

  • LIGO Magazine, Issue 7, 9/2015

    LIGO Magazine, Issue 7, 9/2015

  • Gravitational Waves

    Gravitational Waves

  • 1 Introduction 2 Gravitational Wave Sources

    1 Introduction 2 Gravitational Wave Sources

  • Properties of the Binary Neutron Star Merger GW170817

    Properties of the Binary Neutron Star Merger GW170817

  • Arxiv:2010.12558V2 [Astro-Ph.HE] 3 Nov 2020

    Arxiv:2010.12558V2 [Astro-Ph.HE] 3 Nov 2020

  • Gravitational Waves in the Post-Detection Era

    Gravitational Waves in the Post-Detection Era

  • GW170814: Gravitational Wave Polarization Analysis

    GW170814: Gravitational Wave Polarization Analysis

  • Arxiv:1805.11579V1 [Gr-Qc]

    Arxiv:1805.11579V1 [Gr-Qc]

  • Arxiv:2009.07626V2 [Astro-Ph.HE] 25 Sep 2020 Kavli Institute for Astronomy and Astrophysics at Peking University, Yi He Yuan Lu 5, Beijing 100871, P

    Arxiv:2009.07626V2 [Astro-Ph.HE] 25 Sep 2020 Kavli Institute for Astronomy and Astrophysics at Peking University, Yi He Yuan Lu 5, Beijing 100871, P

  • Insights Into Binary Evolution from Gravitational Waves

    Insights Into Binary Evolution from Gravitational Waves

  • Gravitational Waves from Orbiting Binaries Without General Relativity: a Tutorial Robert C

    Gravitational Waves from Orbiting Binaries Without General Relativity: a Tutorial Robert C

  • Hunting for Mhz Gravitational Waves with the Fermilab Holometer

    Hunting for Mhz Gravitational Waves with the Fermilab Holometer

  • Hands-On Gravitational Wave Astronomy: Extraction of Astrophysical Information from Simulated Signals

    Hands-On Gravitational Wave Astronomy: Extraction of Astrophysical Information from Simulated Signals

  • Black Holes and Gravitational Waves

    Black Holes and Gravitational Waves

  • GW190521: a Binary Black Hole Merger with a Total Mass of 150M ⊙

    GW190521: a Binary Black Hole Merger with a Total Mass of 150M ⊙

Top View
  • The Basic Physics of the Binary Black Hole Merger GW150914
  • Results of Searches for Gravitational Waves in O3 LIGO- Virgo Data
  • Modified Gravitation Theory (MOG) and the Aligo GW190521 Gravitational Wave Event
  • The Basic Physics of the Binary Black Hole Merger GW150914
  • Properties of the Binary Black Hole Merger GW150914 B
  • LIGO SURF Final Report: Estimating the Parameters of a Population of Coalescing Compact Binaries
  • Gravitational Waves Summary of the Presentation for the Proseminar Theoretical Physics Nehir Schmid 06.05.2018
  • Gravitational Waves a New Era in Astroppyhysics
  • Sensitivity Achieved by the LIGO and Virgo Gravitational Wave Detectors During LIGO's Sixth and Virgo's Second and Third
  • Gwtc-2: an Expanded Catalog of Gravitational-Wave Detections
  • Direct Observa1on of Gravita1onal Waves from the Merger and Inspiral of Two Black Holes
  • LIGO Listens for Gravitational Waves
  • On Mass Distribution of Coalescing Black Holes
  • 2019 Spring Symposium
  • Arxiv: Discriminating Same-Mass Neutron Stars and Black Holes Gravitational Wave-Forms
  • Scope out Multiband Gravitational-Wave Observations of GW190521-Like Binary Black Holes with Space Gravitational Wave Antenna B-DECIGO
  • Arxiv:2012.12983V2 [Astro-Ph.HE] 24 May 2021 Lar Models to Explain the Unexpected Properties of Black Hole Mergers (E.G
  • Gw170608: Observation of a 19-Solar-Mass Binary Black Hole Coalescence


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