The ldquoNewtonianrdquo theory of spatially unbounded, self-gravitating, pressureless continua in Lagrangian form is reconsidered. Following a review of the pertinent kinematics, we present alternative formulations of the Lagrangian evolution equations and establish conditions for the equivalence of the Lagrangian and Eulerian representations. We then distinguish open models based on Euclidean space R3 from closed models based (without loss of generality) on a flat torus T3. Using a simple averaging method we show that the spatially averaged variables of an inhomogeneous toroidal model form a spatially homogeneous ldquobackgroundrdquo model and that the averages of open models, if they exist at all, in general do not obey the dynamical laws...
We extend the general relativistic Lagrangian perturbation theory, recently developed for the forma...
We present a new method to calculate formation of cosmological structure in the Newtonian limit. The...
© 2018 American Physical Society. American Physical Society. We extend the general relativistic Lagr...
The ldquoNewtonianrdquo theory of spatially unbounded, self-gravitating, pressureless continua in La...
The ldquoNewtonianrdquo theory of spatially unbounded, self-gravitating, pressureless continua in La...
Basing our discussion on the Lagrangian description of hydrodynamics, we studied the evolution of de...
We formulate a perturbative approximation to gravitational instability, based on Lagrangian hydrody...
Basing our discussion on the Lagrangian description of hydrodynamics, we studied the evolution of de...
We formulate a perturbative approximation to gravitational instability, based on Lagrangian hydrodyn...
We extensively develop a perturbation theory for nonlinear cosmological dynamics, based on the Lagra...
The relativistic generalization of the Newtonian Lagrangian perturbation theory is investigated. In ...
Idealizing matter as a pressureless fluid and representing its motion by a peculiar--velocity field ...
The relativistic generalization of the Newtonian Lagrangian perturbation theory is investigated. In ...
We study the non-linear dynamics of self-gravitating irrotational dust in a general relativistic fra...
We study the non-linear dynamics of self-gravitating irrotational dust in a general relativistic fra...
We extend the general relativistic Lagrangian perturbation theory, recently developed for the forma...
We present a new method to calculate formation of cosmological structure in the Newtonian limit. The...
© 2018 American Physical Society. American Physical Society. We extend the general relativistic Lagr...
The ldquoNewtonianrdquo theory of spatially unbounded, self-gravitating, pressureless continua in La...
The ldquoNewtonianrdquo theory of spatially unbounded, self-gravitating, pressureless continua in La...
Basing our discussion on the Lagrangian description of hydrodynamics, we studied the evolution of de...
We formulate a perturbative approximation to gravitational instability, based on Lagrangian hydrody...
Basing our discussion on the Lagrangian description of hydrodynamics, we studied the evolution of de...
We formulate a perturbative approximation to gravitational instability, based on Lagrangian hydrodyn...
We extensively develop a perturbation theory for nonlinear cosmological dynamics, based on the Lagra...
The relativistic generalization of the Newtonian Lagrangian perturbation theory is investigated. In ...
Idealizing matter as a pressureless fluid and representing its motion by a peculiar--velocity field ...
The relativistic generalization of the Newtonian Lagrangian perturbation theory is investigated. In ...
We study the non-linear dynamics of self-gravitating irrotational dust in a general relativistic fra...
We study the non-linear dynamics of self-gravitating irrotational dust in a general relativistic fra...
We extend the general relativistic Lagrangian perturbation theory, recently developed for the forma...
We present a new method to calculate formation of cosmological structure in the Newtonian limit. The...
© 2018 American Physical Society. American Physical Society. We extend the general relativistic Lagr...