We argue that quantum theory should proceed not from a spacetime background but from a Lie algebra, which is treated as a symmetry algebra. Then the fact that the cosmological constant is positive means not that the spacetime background is curved but that the de Sitter (dS) algebra as the symmetry algebra is more relevant than the Poincare or anti de Sitter ones. The physical interpretation of irreducible representations (IRs) of the dS algebra is considerably different from that for the other two algebras. One IR of the dS algebra splits into independent IRs for a particle and its antiparticle only when Poincare approximation works with a high accuracy. Only in this case additive quantum numbers such as electric, baryon and lepton charges ...
Coupling any interacting quantum mechanical system to gravity in one (time) dimension requires the c...
International audienceWe address the issue why a cosmological constant (dark energy) possesses a sma...
In this paper, a new symmetry argument in a vacuum state with strictly vanishing vacuum energy has b...
We propose a solution to the longstanding cosmological constant (CC) problem which is based on the f...
We present a simple algebraic mechanism for the emergence of deformations of Poincaré symmetries in ...
In this paper we study a new symmetry argument that results in a vacuum state with strictly vanishi...
The phenomenon of the cosmological acceleration discovered in 1998 is usually explained as a manifes...
We have critically compared different approaches to the cosmological constant problem, which is at t...
The de Sitter spacetime is a maximally symmetric spacetime. It is one of the vacuum solutions to Ein...
Abstract: In the last years the traditional scenario of “Big Bang ” has been deeply modified by the ...
In the presence of a cosmological constant, ordinary Poincaré special relativity is no longer valid ...
In the present work, it is shown that the problem of the cosmological constant (CC) is practically t...
Using a D = 1 supergravity framework I construct a super-Friedmann equation for an isotropic and hom...
The cosmological constant is the most economical candidate for dark energy. No other approach really...
Abstract The paper deals with the scale discrepancy between the observed vacuum energy in cosmology ...
Coupling any interacting quantum mechanical system to gravity in one (time) dimension requires the c...
International audienceWe address the issue why a cosmological constant (dark energy) possesses a sma...
In this paper, a new symmetry argument in a vacuum state with strictly vanishing vacuum energy has b...
We propose a solution to the longstanding cosmological constant (CC) problem which is based on the f...
We present a simple algebraic mechanism for the emergence of deformations of Poincaré symmetries in ...
In this paper we study a new symmetry argument that results in a vacuum state with strictly vanishi...
The phenomenon of the cosmological acceleration discovered in 1998 is usually explained as a manifes...
We have critically compared different approaches to the cosmological constant problem, which is at t...
The de Sitter spacetime is a maximally symmetric spacetime. It is one of the vacuum solutions to Ein...
Abstract: In the last years the traditional scenario of “Big Bang ” has been deeply modified by the ...
In the presence of a cosmological constant, ordinary Poincaré special relativity is no longer valid ...
In the present work, it is shown that the problem of the cosmological constant (CC) is practically t...
Using a D = 1 supergravity framework I construct a super-Friedmann equation for an isotropic and hom...
The cosmological constant is the most economical candidate for dark energy. No other approach really...
Abstract The paper deals with the scale discrepancy between the observed vacuum energy in cosmology ...
Coupling any interacting quantum mechanical system to gravity in one (time) dimension requires the c...
International audienceWe address the issue why a cosmological constant (dark energy) possesses a sma...
In this paper, a new symmetry argument in a vacuum state with strictly vanishing vacuum energy has b...