Search for sub-eV axion-like resonance states via stimulated quasi-parallel laser collisions with the parameterization including fully asymmetric collisional geometry

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作者
Kensuke Homma
Yuri Kirita
Masaki Hashida
Yusuke Hirahara
Shunsuke Inoue
Fumiya Ishibashi
Yoshihide Nakamiya
Liviu Neagu
Akihide Nobuhiro
Takaya Ozaki
Madalin-Mihai Rosu
Shuji Sakabe
Ovidiu Tesileanu
机构
[1] Hiroshima University,Graduate School of Advanced Science and Engineering
[2] Kyoto University,Institute for Chemical Research
[3] Kyoto University,Graduate School of Science
[4] Extreme Light Infrastructure-Nuclear Physics (ELI-NP) and Horia Hulubei National Institute for R&D in Physics and Nuclear Engineering (IFIN-HH),Research institute of Science and Technology
[5] National Institute for Laser,undefined
[6] Plasma and Radiation Physics,undefined
[7] Tokai University,undefined
来源
Journal of High Energy Physics | / 2021卷
关键词
Dark matter; Particle and resonance production; Photon production; Other experiments; Exotics;
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摘要
We have searched for axion-like resonance states by colliding optical photons in a focused laser field (creation beam) by adding another laser field (inducing beam) for stimulation of the resonance decays, where frequency-converted signal photons can be created as a result of stimulated photon-photon scattering via exchanges of axion-like resonances. A quasi-parallel collision system (QPS) in such a focused field allows access to the sub-eV mass range of resonance particles. In past searches in QPS, for simplicity, we interpreted the scattering rate based on an analytically calculable symmetric collision geometry in both incident angles and incident energies by partially implementing the asymmetric nature to meet the actual experimental conditions. In this paper, we present new search results based on a complete parameterization including fully asymmetric collisional geometries. In particular, we combined a linearly polarized creation laser and a circularly polarized inducing laser to match the new parameterization. A 0.10 mJ/31 fs Ti:sapphire laser pulse and a 0.20 mJ/9 ns Nd:YAG laser pulse were spatiotemporally synchronized by sharing a common optical axis and focused into the vacuum system. Under a condition in which atomic background processes were completely negligible, no significant scattering signal was observed at the vacuum pressure of 2.6 × 10−5 Pa, thereby providing upper bounds on the coupling-mass relation by assuming exchanges of scalar and pseudoscalar fields at a 95% confidence level in the sub-eV mass range.
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共 24 条
[1]  
Daido R(2017)undefined JCAP 05 044-undefined
[2]  
Takahashi F(2010)undefined JHEP 11 105-undefined
[3]  
Yin W(2012)undefined JHEP 10 146-undefined
[4]  
Acharya BS(2017)undefined JCAP 10 010-undefined
[5]  
Bobkov K(2020)undefined Phys. Rept. 870 1-undefined
[6]  
Kumar P(2020)undefined JHEP 09 095-undefined
[7]  
Cicoli M(1981)undefined Prog. Quantum Electron. 7 1-undefined
[8]  
Goodsell M(2010)undefined Phys. Lett. B 689 149-undefined
[9]  
Ringwald A(2020)undefined Phys. Rept. 871 1-undefined
[10]  
Giannotti M(undefined)undefined undefined undefined undefined-undefined