Synchronization Induced by Ultralight Dark Matter
Fuente:
arXiv
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| Formato: | Preprint |
| Publicado: |
2025
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| _version_ | 1866911057874780160 |
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| author | Nugroho, Chrisna Setyo |
| author_facet | Nugroho, Chrisna Setyo |
| contents | We study the possibility of ultralight bosonic dark matter (UlDM) to induce a synchronized behaviour on randomly evolving oscillators. We introduce a new interaction between UlDM and the oscillators and further demonstrate the occurence of the phase transition from disordered oscillators state into ordered state. For UlDM within the mass range of $10^{-14}\,\text{eV}/c^{2} \leq m_ϕ \leq 1 \,\text{eV}/c^{2}$ as well as the white noise strength lower than 0.01 Hz, the synchronization of randomly distributed oscillators with the mean angular frequency $1$ Hz and the corresponding standard deviation 0.1 Hz occurs when the coupling strength between UlDM and oscillators lies within $10 \geq g_ω \geq 10^{-13}$. This offers an alternative method to unveil the nature of UlDM with respect to the established experiments. |
| format | Preprint |
| id |
arxiv_https___arxiv_org_abs_2507_11144 |
| institution | arXiv |
| publishDate | 2025 |
| record_format | arxiv |
| spellingShingle | Synchronization Induced by Ultralight Dark Matter Nugroho, Chrisna Setyo High Energy Physics - Phenomenology We study the possibility of ultralight bosonic dark matter (UlDM) to induce a synchronized behaviour on randomly evolving oscillators. We introduce a new interaction between UlDM and the oscillators and further demonstrate the occurence of the phase transition from disordered oscillators state into ordered state. For UlDM within the mass range of $10^{-14}\,\text{eV}/c^{2} \leq m_ϕ \leq 1 \,\text{eV}/c^{2}$ as well as the white noise strength lower than 0.01 Hz, the synchronization of randomly distributed oscillators with the mean angular frequency $1$ Hz and the corresponding standard deviation 0.1 Hz occurs when the coupling strength between UlDM and oscillators lies within $10 \geq g_ω \geq 10^{-13}$. This offers an alternative method to unveil the nature of UlDM with respect to the established experiments. |
| title | Synchronization Induced by Ultralight Dark Matter |
| topic | High Energy Physics - Phenomenology |
| url | https://arxiv.org/abs/2507.11144 |