New Deformed Heisenberg Algebra from the -Deformed Model of Dark Matter
arXiv:2304.05840 · doi:10.3389/fspas.2023.1133976
Abstract
Recently, the -deformation-based approach to modeling dark matter, which exploits -deformed thermodynamics, was extended to the study of galaxy halo density profile and of the rotation curves of a number of (dwarf or low brightness) galaxies. For that goal, -deformed analogs of the Lane--Emden equation (LEE) have been proposed, and their solutions describing density profiles obtained. There are two seemingly different versions of -deformed LEE which possess the same solution, and so we deal with their equivalence. From the latter property we derive new, rather unusual, -deformed Heisenberg algebra (HA) for the position and momentum operators, and present the -HA in few possible forms (each one at recovers usual HA). The generalized uncertainty relation linked with the new -HA is studied, along with its interesting implications including the appearance of the quadruple of both maximal and minimal lengths and momenta.
17 pages, 4 figures, to appear in "Frontiers in Astronomy and Space Sciences"
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