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Macroscopicity of quantum superposition

Quantum Physics 2025-06-18 v1

Abstract

In this paper, we define a universal measure of macroscopicity β\beta in the form of, ({\em experimentally observed coherence time})/({\em characteristic time required to repeatably distinguish the components of a quantum superposition state}), to divide the quantum/classical (Q-C) boundary. The analysis shows that, for a matter-wave interferometer, covering systems from electron to macromolecular, the measure of its macroscopicity is expressed by β=pθd/8\beta=p\theta d/8\hbar, and it consistently yields β<1\beta<1 by investigating the coherence data reported in the literature. The result implies that limited advancement has been made toward exploring the Q-C boundary in such experiments. Additionally, for a Ramsey-like interferometer, the measure of its macroscopicity is expressed as β=8π3αν0rs2νs2T/(9c2)\beta=8\pi^3\alpha\nu_0r_s^2\nu_s^2T/ (9c^2). After analyzing the reported experimental data, we find that a maximum value of β300\beta \sim 300 is achieved in the vertical atomic fountain experiments. Therefore, searching the Q-C boundary in the atomic fountain may be a more proper direction.

Keywords

Cite

@article{arxiv.2506.14458,
  title  = {Macroscopicity of quantum superposition},
  author = {Xiao-Fu Peng},
  journal= {arXiv preprint arXiv:2506.14458},
  year   = {2025}
}

Comments

18 pages, 3 figures, 2 tables

R2 v1 2026-07-01T03:21:45.675Z