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Bose-Einstein Condensate and Liquid Helium He$^4$: Implications of GUP and Modified Gravity Correspondence

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arxiv 2401.01159 v2 pith:IDNHYVFY submitted 2024-01-02 gr-qc hep-ph

classification gr-qchep-ph
keywords lesssimtextgravitybose-einsteincondensateheliumliquidbeta
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abstract

Utilizing the recently established connection between Palatini-like gravity and linear Generalized Uncertainty Principle (GUP) models, we have formulated an approach that facilitates the examination of Bose gases. Our primary focus is on the ideal Bose-Einstein condensate and liquid helium, chosen as illustrative examples to underscore the feasibility of tabletop experiments in assessing gravity models. The non-interacting Bose-Einstein condensate imposes constraints on linear GUP and Palatini $f(R)$ gravity (Eddington-inspired Born-Infeld gravity) within the ranges of $-10^{12}\lesssim\sigma\lesssim 3\times 10^{24}{\text{ s}}/{\text{kg m}}$ and $-10^{-1}\lesssim\bar\beta\lesssim 10^{11} \text{ m}^2$ ($-4\times10^{-1}\lesssim\epsilon\lesssim 4\times 10^{11} \text{ m}^2$), respectively. In contrast, the properties of liquid helium suggest more realistic bounds, specifically $-10^{23}\lesssim\sigma\lesssim 10^{23}{\text{ s}}/{\text{kg m}}$ and $-10^{9}\lesssim\bar\beta\lesssim 10^{9} \text{ m}^2$. Additionally, we argue that the newly developed method employing Earth seismic waves provides improved constraints for quantum and modified gravity by approximately one order of magnitude.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. GUP Effective Metric Without GUP: Implications for the Sign of GUP Parameter and Quantum Bounce

    gr-qc 2025-05 conditional novelty 7.0 of 10

    A logarithmic entropy correction, combined with the GEVAG varying-G correspondence, yields a metric whose Hawking temperature exactly matches the GUP temperature, implying a negative GUP parameter under the strict Bek...

  2. Einstein crystals in Snyder and Snyder-de Sitter noncommutative backgrounds

    gr-qc 2026-07 conditional novelty 4.0 of 10

    Snyder and Snyder-de Sitter noncommutativity shifts the Einstein-crystal partition function, internal energy, and specific heat, yielding weak self-consistency bounds on the deformation parameter zeta.

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