We derive a generalized Gross-Pitaevski (GP) equation for a Bose Einstein Condensate (BEC) immersed in a weak gravitational field starting from the covariant Complex Klein-Gordon field in a curved space-time. We compare it with the traditional GP equation where the gravitational field is added by hand as an external potential. We show that there is a small difference of order gz/c2 between them that could be measured in the future using Bose-Einstein Condensates. This represents the next order correction to the Newtonian gravity in a curved space-time
The time-dependent Gross-Pitaevskii equation describes the dynamics of initially trapped Bose-Einste...
We consider the possibility that the dark matter which is required to explain the dynamics of the ne...
Phonons have the characteristic linear dispersion relation of massless relativistic particles. They ...
We analyse prospects for the use of Bose-Einstein condensates as condensed-matter systems suitable f...
International audienceWe develop a hydrodynamic representation of the Klein-Gordon-Maxwell-Einstein ...
In this paper we consider the Dvali and Gómez assumption that the end state of a gravitational colla...
Analogue models for gravity intend to provide a framework where matter and gravity, as well as their...
We analyze in detail a previous proposal by Dvali and Gómez that black holes could be treated as con...
We study certain stationary and time-evolution problems of trapped Bose-Einstein condensates using t...
We analyse prospects for the use of Bose-Einstein condensates as condensed-matter systems suitable f...
Measuring effects of General Relativity and beyond in the gravitational field of the Earth is a main...
We numerically investigate spherically symmetric collapses in the Gross–Pitaevskii equation with att...
Abstract. We discuss the analogy between a classical scalar field with a self–interacting potential,...
We report on some recent results concerning the dynamics of Bose-Einstein condensates, obta...
We study the numerical solution of the time-dependent Gross-Pitaevskii equation (GPE) describing a B...
The time-dependent Gross-Pitaevskii equation describes the dynamics of initially trapped Bose-Einste...
We consider the possibility that the dark matter which is required to explain the dynamics of the ne...
Phonons have the characteristic linear dispersion relation of massless relativistic particles. They ...
We analyse prospects for the use of Bose-Einstein condensates as condensed-matter systems suitable f...
International audienceWe develop a hydrodynamic representation of the Klein-Gordon-Maxwell-Einstein ...
In this paper we consider the Dvali and Gómez assumption that the end state of a gravitational colla...
Analogue models for gravity intend to provide a framework where matter and gravity, as well as their...
We analyze in detail a previous proposal by Dvali and Gómez that black holes could be treated as con...
We study certain stationary and time-evolution problems of trapped Bose-Einstein condensates using t...
We analyse prospects for the use of Bose-Einstein condensates as condensed-matter systems suitable f...
Measuring effects of General Relativity and beyond in the gravitational field of the Earth is a main...
We numerically investigate spherically symmetric collapses in the Gross–Pitaevskii equation with att...
Abstract. We discuss the analogy between a classical scalar field with a self–interacting potential,...
We report on some recent results concerning the dynamics of Bose-Einstein condensates, obta...
We study the numerical solution of the time-dependent Gross-Pitaevskii equation (GPE) describing a B...
The time-dependent Gross-Pitaevskii equation describes the dynamics of initially trapped Bose-Einste...
We consider the possibility that the dark matter which is required to explain the dynamics of the ne...
Phonons have the characteristic linear dispersion relation of massless relativistic particles. They ...