SOLVING THE DARK ENERGY PROBLEM VIA SYMMETRY CONSTRAINTS
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Title
SOLVING THE DARK ENERGY PROBLEM VIA SYMMETRY CONSTRAINTS
Author
ARRAUT, IVAN
PUBLISH YEAR
2025
FACULTY / RESEARCH UNIT
Abstract
WE DERIVE THE VACUUM ENERGY FROM THE ZERO-POINT QUANTUM FLUCTUATIONS AFTER IMPOSING A NATURAL CONSTRAINT EMERGING FROM THE ROTATIONAL SYMMETRY INSIDE THE DE-SITTER METRIC. THE CONSTRAINT IMPOSES A MAXIMUM AZIMUTHAL ANGLE FOR EACH FREQUENCY MODE EMERGING FROM THE VACUUM. IN THIS WAY, THE SHORTER THE WAVELENGTH OF THE MODE, THE LARGER WILL BE ITS SUPPRESSION. THE SAME RESULT IS DERIVED SUBSEQUENTLY BY USING THE FRIEDMANN–LEMAITRE–ROBERTSON–WALKER (FLRW) METRIC. WE THEN MAKE A PHYSICAL INTERPRETATION OF THE PHYSICAL EFFECTS FROM THE PERSPECTIVE OF PAIR CREATIONS OVER THE VACUUM, WHERE THE MENTIONED CONSTRAINT EMERGES, LIMITING THEN THE MAXIMUM ANGLE WHICH EACH PAIR GENERATED FROM THE VACUUM CAN ROTATE WITH RESPECT TO EACH OTHER DURING THEIR SHORT EXISTENCE.
DOCUMENT TYPE
Part of
THE EUROPEAN PHYSICAL JOURNAL C
DOI
10.1140/epjc/s10052-025-14213-x
ISSN
1434-6052