We explore the string axion dark matter with gravitational waves in Chern–Simons gravity. We show that the parametric resonance of gravitational waves occurs due to the axion coherent oscillation. Remarkably, the circular polarization of gravitational waves is induced by the parity violating Chern–Simons coupling. In fact, the gravitational waves should be enhanced ten times every 10 − 8 pc propagation in the presence of the axion dark matter with mass 10 − 10 eV provided the coupling constant ℓ = 10 8 km . Hence, after 10 kpc propagation, the amplitude of gravitational waves is enhanced significantly and the polarization of gravitational waves becomes circular. However, we have never observe...
© 2019 American Physical Society. In this paper we shall investigate the propagation of gravitationa...
In the axiverse scenario, a massive scalar field (string axion) forms a cloud around a rotating blac...
Rotations of an axion field in field space provide a natural origin for an era of kination dominatio...
We explore the string axion dark matter with gravitational waves in Chern-Simons gravity. We show th...
In this paper, we consider dynamical Chern–Simons gravity with the identification of the scalar fiel...
Jung S, Kim TH, Soda J, Urakawa Y. Constraining the gravitational coupling of axion dark matter at L...
String theory suggests the simultaneous presence of many ultralight axions, possibly populating each...
International audienceVery light pseudoscalar fields, often referred to as axions, are compelling da...
Within an effective field theory derived from string theory, the universal axion has to be coupled t...
Gravitational waves provide a novel way to probe axions or axion-like particles coupled to a dark ph...
Conventional approaches to probing axions and axion-like particles (ALPs) typically rely on a coupli...
Ultralight axionlike particles (ALPs) are compelling dark matter candidates because of their potenti...
We study the problem of axion-photon coupling in the magnetic field influenced by gravitational radi...
Abstract Conventional approaches to probing axions and axion-like particles (ALPs) typically rely on...
Abstract Rotations of an axion field in field space provide a natural origin fo...
© 2019 American Physical Society. In this paper we shall investigate the propagation of gravitationa...
In the axiverse scenario, a massive scalar field (string axion) forms a cloud around a rotating blac...
Rotations of an axion field in field space provide a natural origin for an era of kination dominatio...
We explore the string axion dark matter with gravitational waves in Chern-Simons gravity. We show th...
In this paper, we consider dynamical Chern–Simons gravity with the identification of the scalar fiel...
Jung S, Kim TH, Soda J, Urakawa Y. Constraining the gravitational coupling of axion dark matter at L...
String theory suggests the simultaneous presence of many ultralight axions, possibly populating each...
International audienceVery light pseudoscalar fields, often referred to as axions, are compelling da...
Within an effective field theory derived from string theory, the universal axion has to be coupled t...
Gravitational waves provide a novel way to probe axions or axion-like particles coupled to a dark ph...
Conventional approaches to probing axions and axion-like particles (ALPs) typically rely on a coupli...
Ultralight axionlike particles (ALPs) are compelling dark matter candidates because of their potenti...
We study the problem of axion-photon coupling in the magnetic field influenced by gravitational radi...
Abstract Conventional approaches to probing axions and axion-like particles (ALPs) typically rely on...
Abstract Rotations of an axion field in field space provide a natural origin fo...
© 2019 American Physical Society. In this paper we shall investigate the propagation of gravitationa...
In the axiverse scenario, a massive scalar field (string axion) forms a cloud around a rotating blac...
Rotations of an axion field in field space provide a natural origin for an era of kination dominatio...