We explore the possibility that a charged particle moving in the gravitational field generated by a scalar star could radiate energy via a recently proposed gravitational Cerenkov mechanism. We prove numerically that this is not possible for stable boson stars. We also show that soliton stars could have Cerenkov radiation for particular values of the boson mass. although the diluteness of the star grows and actual observational possibility decreases for the more usually discussed boson masses. These conclusions diminish, although do not completely rule out, the observational possibility of actually detecting scalar stars using this mechanism, and lead us to consider other forms, such as gravitational lensing
Boson stars are configurations of the gravitating complex scalar field in the Einstein’s GeneralTheo...
We study novel solitonic solutions to Einstein-Klein-Gordon theory in the presence of a periodic sca...
We study charged boson stars in scalar-tensor (ST) gravitational theories. We analyze the weak field...
We explore the possibility that a charged particle moving in the gravitational field generated by a ...
A thin shell can separate an interior region of Riemannian geometry from an exterior spherically sym...
The emission of the Cerenkov radiation by charged particles is analyzed for stationary metrics. Resu...
The possibility that a charged particle propagating in a gravitational field described by Brans-Dick...
As first noted by Robert Wagoner in the 1970s, if a scalar field is nonminimally coupled to the Ricc...
We present a class of general relativistic soliton-like solutions composed of multiple minimally cou...
As first noted by Robert Wagoner in the 1970s, if a scalar field is nonminimally coupled to the Ricc...
The value /b a/ of the ultimate limit for the smallest measurable distance should be considered as a...
We propose a new method to search for light (pseudo-)scalar particles in the spectra of compact astr...
The simplest way to modify gravity is to extend the gravitational sector to include an additional sc...
The couplings of a light scalar to ordinary matter induce non-vanishing fields φ inside and around s...
Boson stars are configurations of the gravitating complex scalar field in the Einstein’s GeneralTheo...
We study novel solitonic solutions to Einstein-Klein-Gordon theory in the presence of a periodic sca...
We study charged boson stars in scalar-tensor (ST) gravitational theories. We analyze the weak field...
We explore the possibility that a charged particle moving in the gravitational field generated by a ...
A thin shell can separate an interior region of Riemannian geometry from an exterior spherically sym...
The emission of the Cerenkov radiation by charged particles is analyzed for stationary metrics. Resu...
The possibility that a charged particle propagating in a gravitational field described by Brans-Dick...
As first noted by Robert Wagoner in the 1970s, if a scalar field is nonminimally coupled to the Ricc...
We present a class of general relativistic soliton-like solutions composed of multiple minimally cou...
As first noted by Robert Wagoner in the 1970s, if a scalar field is nonminimally coupled to the Ricc...
The value /b a/ of the ultimate limit for the smallest measurable distance should be considered as a...
We propose a new method to search for light (pseudo-)scalar particles in the spectra of compact astr...
The simplest way to modify gravity is to extend the gravitational sector to include an additional sc...
The couplings of a light scalar to ordinary matter induce non-vanishing fields φ inside and around s...
Boson stars are configurations of the gravitating complex scalar field in the Einstein’s GeneralTheo...
We study novel solitonic solutions to Einstein-Klein-Gordon theory in the presence of a periodic sca...
We study charged boson stars in scalar-tensor (ST) gravitational theories. We analyze the weak field...