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Quantum calculation of axion-photon transition in electromagnetodynamics for cavity haloscope

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【作者】 李佟张瑞珈

【Author】 Tong Li;Rui-Jia Zhang;School of Physics, Nankai University;

【通讯作者】 李佟;

【机构】 School of Physics, Nankai University

【摘要】 The Witten effect implies the presence of electric charge of magnetic monople and the possible relationship between axion and dyon. The axion-dyon dynamics can be reliably built based on the quantum electromagnetodynamics(QEMD) which was developed by Schwinger and Zwanziger in the 1960’s. A generic low-energy axionphoton effective field theory can also be realized in the language of “generalized symmetries” with higher-form symmetries and background gauge fields. In this work, we implement the quantum calculation of the axion-single photon transition rate inside a homogeneous electromagnetic field in terms of the new axion interaction Hamiltonian in QEMD. This quantum calculation can clearly imply the enhancement of conversion rate through resonant cavity in axion haloscope experiments. We also show the promising potentials on the cavity search of new axion-photon couplings.

【Abstract】 The Witten effect implies the presence of electric charge of magnetic monople and the possible relationship between axion and dyon. The axion-dyon dynamics can be reliably built based on the quantum electromagnetodynamics(QEMD) which was developed by Schwinger and Zwanziger in the 1960’s. A generic low-energy axionphoton effective field theory can also be realized in the language of “generalized symmetries” with higher-form symmetries and background gauge fields. In this work, we implement the quantum calculation of the axion-single photon transition rate inside a homogeneous electromagnetic field in terms of the new axion interaction Hamiltonian in QEMD. This quantum calculation can clearly imply the enhancement of conversion rate through resonant cavity in axion haloscope experiments. We also show the promising potentials on the cavity search of new axion-photon couplings.

【基金】 supported by the National Natural Science Foundation of China (12375096, 11975129, 12035008);“the Fundamental Research Funds for the Central Universities”,Nankai University (63196013)
  • 【文献出处】 Chinese Physics C ,中国物理C , 编辑部邮箱 ,2023年12期
  • 【分类号】O441.4
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