English

Daily modulations and broadband strategy in axion searches. An application with CAST-CAPP detector

High Energy Physics - Experiment 2025-05-07 v2 Instrumentation and Methods for Astrophysics High Energy Physics - Phenomenology Instrumentation and Detectors

Abstract

It has been previously advocated that the presence of the daily and annual modulations of the axion flux on the Earth's surface may dramatically change the strategy of the axion searches. The arguments were based on the so-called Axion Quark Nugget (AQN) dark matter model which was originally put forward to explain the similarity of the dark and visible cosmological matter densities ΩdarkΩvisible\Omega_{\rm dark}\sim \Omega_{\rm visible}. In this framework, the population of galactic axions with mass 106eVma103eV 10^{-6} {\rm eV}\lesssim m_a\lesssim 10^{-3}{\rm eV} and velocity va103c\langle v_a\rangle\sim 10^{-3} c will be accompanied by axions with typical velocities va0.6c\langle v_a\rangle\sim 0.6 c emitted by AQNs. Furthermore, in this framework, it has also been argued that the AQN-induced axion daily modulation (in contrast with the conventional WIMP paradigm) could be as large as (1020)%(10-20)\%, which represents the main motivation for the present investigation. We argue that the daily modulations along with the broadband detection strategy can be very useful tools for the discovery of such relativistic axions. The data from the CAST-CAPP detector have been used following such arguments. Unfortunately, due to the dependence of the amplifier chain on temperature-dependent gain drifts and other factors, we could not conclusively show the presence or absence of a dark sector-originated daily modulation. However, this proof of principle analysis procedure can serve as a reference for future studies.

Keywords

Cite

@article{arxiv.2405.10972,
  title  = {Daily modulations and broadband strategy in axion searches. An application with CAST-CAPP detector},
  author = {F. Caspers and C. M. Adair and K. Altenmüller and V. Anastassopoulos and S. Arguedas Cuendis and J. Baier and K. Barth and A. Belov and D. Bozicevic and H. Bräuninger and G. Cantatore and J. F. Castel and S. A. Çetin and W. Chung and H. Choi and J. Choi and T. Dafni and M. Davenport and A. Dermenev and K. Desch and B. Döbrich and H. Fischer and W. Funk and J. Galan and A. Gardikiotis and S. Gninenko and J. Golm and M. D. Hasinoff and D. H. H. Hoffmann and D. Díez Ibáñez and I. G. Irastorza and K. Jakovčić and J. Kaminski and M. Karuza and C. Krieger and Ç. Kutlu and B. Lakić and J. M. Laurent and J. Lee and S. Lee and G. Luzón and C. Margalejo and M. Maroudas and L. Miceli and H. Mirallas and L. Obis and A. Özbey and K. Özbozduman and M. J. Pivovaroff and M. Rosu and J. Ruz and E. Ruiz-Chóliz and S. Schmidt and Y. K. Semertzidis and S. K. Solanki and L. Stewart and I. Tsagris and T. Vafeiadis and J. K. Vogel and M. Vretenar and S. Youn and A. Zhitnitsky and K. Zioutas},
  journal= {arXiv preprint arXiv:2405.10972},
  year   = {2025}
}

Comments

Published version available Open Access in Phys. Rev. D at https://journals.aps.org/prd/abstract/10.1103/PhysRevD.111.082009