Electromagnetic modeling and science reach of DMRadio-m$^3$
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J. Benabou | L. Winslow | K. Irwin | K. Bibber | R. Kolevatov | W. Wisniewski | B. Safdi | Y. Kahn | W. Craddock | D. Li | A. Phipps | F. Kadribasic | S. Chaudhuri | S. Kuenstner | P. Graham | A. Leder | J. Ouellet | R. Henning | L. Brouwer | C. Bartram | B. Young | J. Foster | J. Corbin | A. Droster | J. Fry | A. Keller | K. Pappas | N. Rapidis | C. Salemi | M. Simanovskaia | E. C. V. Assendelft | K. Wells | N. Kurita | J. Singh | H. Cho | DMRadio Collaboration A. AlShirawi | K. M. W. Pappas
[1] D. A. Dunnett. Classical Electrodynamics , 2020, Nature.
[2] M. Berz,et al. Nuclear Instruments and Methods in Physics Research, Section A: Accelerators, Spectrometers, Detectors and Associated Equipment: Editorial , 2006 .
[3] Microwave Cavities and Detectors for Axion Research , 2020, Springer Proceedings in Physics.
[4] Hawkes. Advances in electronics and electron physics , 1990 .
[5] N. S. Barnett,et al. Private communication , 1969 .