We investigate the long-distance, low-energy, leading quantum corrections to gravitational potential for scalarized neutron star (NS) binary systems, by treating general relativity as an effective field theory. We neglect the extended scales of two star components and treat them as heavy point particles, which gravitationally interact with each other via the exchanges of both gravitons and scalar particles, because of the settled scalar configurations inside the stars. Accordingly, the gravitational potential includes both Newtonian potential and scalar-modified Newtonian-like part. We, in the non-relativistic limit, calculate the non-analytic corrections to the modified gravitational potential directly from the sum of all exchanges of both...
Gravitational waves can be used to test general relativity (GR) in the highly dynamical strong-field...
We calculate quasi-equilibrium sequences of equal-mass, irrotational binary neutron stars (BNSs) in ...
We employ the graviton self-energy induced by a massless, minimally coupled (MMC) scalar on de Sitte...
We resor to the covariant quantization treatment and investigate the long-distance, low-energy, lead...
Using ensemble of N gravitons, we evaluate the integrated density of states for gravitons arising fr...
The vacuum energy of fluctuating quantum fields has been intensively studied by analyzing boundary c...
Since the quantum field theory was invented at the end of 1920s, attempts have been made to apply it...
International audienceWe present a framework to study generic neutron-star binaries in scalar-tensor...
We present a framework to study generic neutron-star binaries in scalar-tensor theories of gravity. ...
Scalar-tensor theories of gravity are natural phenomenological alternatives to General Relativity, w...
Scalar-tensor theories of gravity are natural phenomenological alternatives to General Relativity, w...
Abstract In analogy with spontaneous magnetization of ferromagnets below the Curie temperature, a ne...
In analogy with spontaneous magnetization of ferromagnets below the Curie temperature, a neutron sta...
International audienceScalar-tensor theories of gravity are natural phenomenological alternatives to...
International audienceScalar-tensor theories of gravity are natural phenomenological alternatives to...
Gravitational waves can be used to test general relativity (GR) in the highly dynamical strong-field...
We calculate quasi-equilibrium sequences of equal-mass, irrotational binary neutron stars (BNSs) in ...
We employ the graviton self-energy induced by a massless, minimally coupled (MMC) scalar on de Sitte...
We resor to the covariant quantization treatment and investigate the long-distance, low-energy, lead...
Using ensemble of N gravitons, we evaluate the integrated density of states for gravitons arising fr...
The vacuum energy of fluctuating quantum fields has been intensively studied by analyzing boundary c...
Since the quantum field theory was invented at the end of 1920s, attempts have been made to apply it...
International audienceWe present a framework to study generic neutron-star binaries in scalar-tensor...
We present a framework to study generic neutron-star binaries in scalar-tensor theories of gravity. ...
Scalar-tensor theories of gravity are natural phenomenological alternatives to General Relativity, w...
Scalar-tensor theories of gravity are natural phenomenological alternatives to General Relativity, w...
Abstract In analogy with spontaneous magnetization of ferromagnets below the Curie temperature, a ne...
In analogy with spontaneous magnetization of ferromagnets below the Curie temperature, a neutron sta...
International audienceScalar-tensor theories of gravity are natural phenomenological alternatives to...
International audienceScalar-tensor theories of gravity are natural phenomenological alternatives to...
Gravitational waves can be used to test general relativity (GR) in the highly dynamical strong-field...
We calculate quasi-equilibrium sequences of equal-mass, irrotational binary neutron stars (BNSs) in ...
We employ the graviton self-energy induced by a massless, minimally coupled (MMC) scalar on de Sitte...