Gravitational wave in f(R) gravity: possible signature of sub- and super-Chandrasekhar limiting mass white dwarfs
arXiv:2101.07278 · doi:10.3847/1538-4357/abddb8
Abstract
After the prediction of many sub- and super-Chandrasekhar (at least a dozen for the latter) limiting mass white dwarfs, hence apparently peculiar class of white dwarfs, from the observations of luminosity of type Ia supernovae, researchers have proposed various models to explain these two classes of white dwarfs separately. We earlier showed that these two peculiar classes of white dwarfs, along with the regular white dwarfs, can be explained by a single form of the f(R) gravity, whose effect is significant only in the high-density regime, and it almost vanishes in the low-density regime. However, since there is no direct detection of such white dwarfs, it is difficult to single out one specific theory from the zoo of modified theories of gravity. We discuss the possibility of direct detection of such white dwarfs in gravitational wave astronomy. It is well-known that in f(R) gravity, more than two polarization modes are present. We estimate the amplitudes of all the relevant modes for the peculiar as well as the regular white dwarfs. We further discuss the possibility of their detections through future-based gravitational wave detectors, such as LISA, ALIA, DECIGO, BBO, or Einstein Telescope, and thereby put constraints or rule out various modified theories of gravity. This exploration links the theory with possible observations through gravitational wave in f(R) gravity.
15 pages including 10 figures and 1 table; accepted for publication in ApJ
References in corpus (23)
- The Confrontation between General Relativity and Experiment
- Gravitational-wave sensitivity curves
- The type Ia supernova SNLS-03D3bb from a super-Chandrasekhar-mass white dwarf star
- Spherically symmetric solutions of modified field equations in f(R) theories of gravity
- The Luminous and Carbon-Rich Supernova 2006gz: A Double Degenerate Merger?
- A radio pulsing white dwarf binary star
- New mass limit for white dwarfs: super-Chandrasekhar type Ia supernova as a new standard candle
- Thin accretion disks in f(R) modified gravity models
- The underluminous Type Ia Supernova 2005bl and the class of objects similar to SN 1991bg
- Consistent estimates of (56)Ni yields for type Ia supernovae
- Asymptotic safety casts its shadow
- On the 1/c Expansion of f(R) Gravity
- Accretion disks around black holes in modified strong gravity
- Constraining f(R) gravity in solar system, cosmology and binary pulsar systems
- Maximum mass of stable magnetized highly super-Chandrasekhar white dwarfs: stable solutions with varying magnetic fields
- Modified Einstein's gravity as a possible missing link between sub- and super-Chandrasekhar type Ia supernovae
- CTCV J2056-3014: An X-ray-faint Intermediate Polar Harboring An Extremely Fast-spinning White Dwarf
- One possible solution of peculiar type Ia supernovae explosions caused by a charged white dwarf
- Super-Chandrasekhar-Mass Light Curve Models for the Highly Luminous Type Ia Supernova 2009dc
- Timescales for detection of super-Chandrasekhar white dwarfs by gravitational wave astronomy
- Asymptotically flat vacuum solution in modified theory of Einstein's gravity
- Gravitational waves from fast-spinning white dwarfs
- Suppression of luminosity and mass-radius relation of highly magnetized white dwarfs
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- Gravitational Lensing in Modified Gravity: A case study for Fast Radio Bursts
- Weak-field limit of gravity to unify peculiar white dwarfs
- Cooling Process of White Dwarf Stars in Palatini Gravity
- Constraining fundamental parameters in modified gravity using Gaia-DR2 massive white dwarf observation
- Scalar Mode Quadrupole Radiation from Astronomical Sources in Modified Gravity
- Damping of gravitational waves in f(R) gravity
- Strong gravitational lensing by black hole in F(R) Euler Heisenberg Gravity's Rainbow
- Refining fundamental constants with white dwarfs: machine learning informed constraints on fine-structure constant and proton-to-electron mass ratio
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