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Research PaperResearchia:202608.06016

Machian MOND: a variable $a_0$ in galaxy clusters

Manuel Uruena Palomo

Abstract

Modified Newtonian Dynamics (MOND) generally resolves the need for dark matter in galaxy rotation curves introducing a single new constant of acceleration $a_0$. It is well known that increasing $a_0$ by a factor of a few can alleviate the residual mass discrepancies that MOND leaves in galaxy clusters. Within a parameter-free Machian interpretation of MOND, in which $a_0\sim GM_u/R_u^2$ arises from the scalar sum of inverse-square distance gravitational mass contributions in the universe, we pr...

Submitted: August 6, 2026Subjects: Physics; Physics

Description / Details

Modified Newtonian Dynamics (MOND) generally resolves the need for dark matter in galaxy rotation curves introducing a single new constant of acceleration a0a_0. It is well known that increasing a0a_0 by a factor of a few can alleviate the residual mass discrepancies that MOND leaves in galaxy clusters. Within a parameter-free Machian interpretation of MOND, in which a0∼GMu/Ru2a_0\sim GM_u/R_u^2 arises from the scalar sum of inverse-square distance gravitational mass contributions in the universe, we promote a0a_0 to a variable influenced by mass external to a locally enclosed region in the spherically symmetric case. Instead of a boost of a0a_0 in terms of gravitational potentials as in EMOND, we show that a boost in terms of this directionless inverse-square field roughly amounts to the boost needed to accommodate the mass discrepancies of MOND in galaxy clusters. We conclude by beginning to generalize the proposed formulation beyond spherical symmetry.


Source: arXiv:2608.04894v1 - http://arxiv.org/abs/2608.04894v1 PDF: https://arxiv.org/pdf/2608.04894v1 Original Link: http://arxiv.org/abs/2608.04894v1

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Date:
Aug 6, 2026
Topic:
Physics
Area:
Physics
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