PAPER / ARXIV:2609.09717
Jinsu Kim , Sungjae Bae , Junu Jeong , Younggeun Kim , Jihn E. Kim , Arjan F. van Loo , Yasunobu Nakamura , Seonjeong Oh , Taehyeon Seong , Yannis K. Semertzidis , Sergey Uchaikin , SungWoo Youn
RESUMO
Conventional high-mass axion haloscopes based on the TM$_{010}$ mode lose detection volume as the resonant frequency increases. We report an extended axion search using a dielectric-restored TM$_{020}$ cavity haloscope with symmetry-preserving auxetic tuning based on a single-degree-of-freedom mechanical architecture. Using a near-quantum-limited microwave receiver, we searched a frequency range of 4.98-5.07 GHz and exclude axion-photon couplings with sensitivity approaching the KSVZ benchmark. Together with two earlier searches, the present scans extend a multi-scan program based on this architecture, yielding nearly 300 MHz of contiguous high-mass axion coverage over 4.98-5.27 GHz, the first broad search reported with a single higher-order-mode haloscope. This work establishes higher-order-mode cavities as a practical, scalable route beyond the TM$_{010}$ volume penalty.
NO MESMO MAPA