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Autori principali: Okilov, Shuhrat, Khamidov, Ulugbek
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Pubblicazione: Zenodo 2026
Accesso online:https://doi.org/10.5281/zenodo.18360796
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author Okilov, Shuhrat
Khamidov, Ulugbek
author_facet Okilov, Shuhrat
Khamidov, Ulugbek
contents <p>Reproducible code and datasets to compute bounds on the dissipative Continuous Spontaneous Localization (dCSL) model from ultralow mechanical dissipation measurements. The toolkit implements the dCSL collapse-induced damping rate for a homogeneous sphere (as used in Vinante et al., Phys. Rev. Research 2, 043229 (2020)) and computes constraint curves λ_max(r_c; T_c) from the inequality γ_c ≤ γ_exp. Includes two experimental inputs (Vinante 2020 levitated micromagnet; Pontin 2020 levitated silica nanoparticle) and generates publication-ready plots and a summary CSV.</p>
format Recurso digital
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institution Zenodo
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publishDate 2026
publisher Zenodo
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spellingShingle dCSL Friction-Bound Toolkit: Reproducible bounds from residual damping (v1.1)
Okilov, Shuhrat
Khamidov, Ulugbek
<p>Reproducible code and datasets to compute bounds on the dissipative Continuous Spontaneous Localization (dCSL) model from ultralow mechanical dissipation measurements. The toolkit implements the dCSL collapse-induced damping rate for a homogeneous sphere (as used in Vinante et al., Phys. Rev. Research 2, 043229 (2020)) and computes constraint curves λ_max(r_c; T_c) from the inequality γ_c ≤ γ_exp. Includes two experimental inputs (Vinante 2020 levitated micromagnet; Pontin 2020 levitated silica nanoparticle) and generates publication-ready plots and a summary CSV.</p>
title dCSL Friction-Bound Toolkit: Reproducible bounds from residual damping (v1.1)
url https://doi.org/10.5281/zenodo.18360796