New probe of gravity: strongly lensed gravitational wave multi-messenger approach
arXiv:1810.00164 · doi:10.3847/1538-4357/ab271e
Abstract
Strong gravitational lensing by galaxies provides us with a unique opportunity to understand the nature of gravity on galactic and extra-galactic scales. In this paper, we propose a new multimessenger approach using data from both gravitational wave (GW) and the corresponding electromagnetic (EM) counterpart to infer the constraint of the modified gravity (MG) theory denoted by the scale dependent phenomenological parameter. To demonstrate the robustness of this approach, we calculate the time-delay predictions by choosing various values of the phenomenological parameters and then compare them with that from the general relativity (GR). For the third generation ground-based GW observatory, with one typical strongly lensed GW+EM event, and assuming that the dominated error from the stellar velocity dispersions is 5\%, the GW time-delay data can distinguish an 18\% MG effect on a scale of tens of kiloparsecs with a confidence level. Assuming GR and a Singular Isothermal Sphere mass model, there exists a simplified consistency relationship between time-delay and imaging data. This relationship does not require for the velocity dispersion measurement, and hence can avoid major uncertainties. By using this relationship, the multimessenger approach is able to distinguish an MG effect. Our results show that the GW multimessenger approach can play an important role in revealing the nature of gravity on the galactic and extra-galactic scales.
references updated
References in corpus (25)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- The Confrontation between General Relativity and Experiment
- Gravitational Waves and Gamma-rays from a Binary Neutron Star Merger: GW170817 and GRB 170817A
- Models of f(R) Cosmic Acceleration that Evade Solar-System Tests
- Disappearing cosmological constant in f(R) gravity
- Beyond the Cosmological Standard Model
- Strong constraints on cosmological gravity from GW170817 and GRB 170817A
- Tests of General Relativity with GW170817
- H0LiCOW - IX. Cosmographic analysis of the doubly imaged quasar SDSS 1206+4332 and a new measurement of the Hubble constant
- Distinguishing Modified Gravity from Dark Energy
- Search for gravitational lensing signatures in LIGO-Virgo binary black hole events
- A precise extragalactic test of General Relativity
- Precision cosmology from future lensed gravitational wave and electromagnetic signals
- Strong Lens Time Delay Challenge: II. Results of TDC1
- Speed of Gravitational Waves from Strongly Lensed Gravitational Waves and Electromagnetic Signals
- What if LIGO's gravitational wave detections are strongly lensed by massive galaxy clusters?
- Strong gravitational lensing of gravitational waves from double compact binaries - perspectives for the Einstein Telescope
- Strong lensing of gravitational waves as seen by LISA
- Constraint on the Post-Newtonian Parameter gamma on Galactic Size Scales
- Generalized framework for testing gravity with gravitational-wave propagation. III. Future prospect
- Test of parametrized post-Newtonian gravity with galaxy-scale strong lensing systems
- Practical solutions for perturbed f(R) gravity
- A parametrisation of modified gravity on nonlinear cosmological scales
- Strongly Lensed Gravitational Waves and Electromagnetic Signals as Powerful Cosmic Rulers
- H0LiCOW VI. Testing the fidelity of lensed quasar host galaxy reconstruction
Cited by in corpus (17)
- The Gravitational-Wave Physics II: Progress
- Evolution of Galaxy Star Formation and Metallicity: Impact on Double Compact Objects Mergers
- Strong lensing as a giant telescope to localize the host galaxy of gravitational wave event
- The first simultaneous measurement of Hubble constant and post-Newtonian parameter from Time-Delay Strong Lensing
- Cosmology with the Einstein Telescope: No Slip Gravity Model and Redshift Specifications
- Galaxy-Scale Test of General Relativity with Strong Gravitational Lensing
- Perturbative deflection angle for signal with finite distance and general velocities
- Detecting Strong Gravitational Lensing of Gravitational Waves with TianQin
- Unveiling Microlensing Biases in Testing General Relativity with Gravitational Waves
- Time delay of timelike particles in gravitational lensing of Schwarzschild spacetime
- Prospects of strongly lensed fast radio bursts: Simultaneous measurement of post-Newtonian parameter and Hubble constant
- Cosmological Tests of Gravity: A Future Perspective
- Fundamental Physics and Cosmology with TianQin
- Universal time delay in static spherically symmetric spacetimes for null and timelike signals
- Bayesian Analysis of Wave-Optics Gravitationally Lensed Massive Black Hole Binaries with Space-Based Gravitational Wave Detector
- Gravitational Lensing of Gravitational Waves from Astrophysical Sources: Theory, Detection, and Applications
- Testing General Relativity on Galactic Scales via DESI-BAO and Strong Lensing: Circumventing Assumptions on the Hubble Constant, Sound Horizon, and Dark Energy