Published April 28, 2026 | Version v1
Computational notebook Open

Time-Reversal Symmetry Breaking Superconducting State and Collective Modes in Kagome Superconductors

Authors/Creators

Description

We comprehensively study the unconventional pairing and collective modes in the multiband kagome superconductors AV$_3$Sb$_5$ (A=$\mathrm{K},\mathrm{Cs},\mathrm{Rb}$). By solving gap equations at zero temperature, we identify a transition from normal $s++/s\pm$-wave pairing to time-reversal symmetry (TRS) breaking pairing with a variation of inter-pocket interactions or density of states. This TRS breaking pairing originates from the superconducting phase frustration of different Fermi pockets and can account for experimental TRS breaking signal in kagome superconductors. Moreover, we investigate collective modes, including the Higgs, Leggett, and Anderson-Bogoliubov (AB) modes, arising from fluctuations of the amplitude, relative phase, and overall phase of the superconducting order parameters, respectively. Remarkably, due to the presence of multibands, one branch of the Leggett modes becomes nearly massless near the TRS breaking transition, providing a compelling smoking-gun signature of TRS-breaking superconductivity, in clear contrast to TRS-breaking charge orders. Our results elucidate the rich superconducting physics and its associated collective modes in kagome metals, and suggest feasible experimental detection of TRS breaking pairing.

Files

Files (1.2 MB)

Name Size Download all
md5:a9f3c64011be44c627d3a563f3a50127
71.7 kB Download
md5:176fda4587858dfa7b00e54561e9262d
85.1 kB Download
md5:493ddaea3452e9bd5195d1ad44cdc826
97.9 kB Download
md5:89646e627fb673f6ac6782d5d87ef2e5
73.9 kB Download
md5:97801762bcdefc6d060d6affba7f5525
74.3 kB Download
md5:3c2448174ebee40abbc9c3e3cc307493
171.7 kB Download
md5:71e6c766da0b03b53570926db43dbd55
287.7 kB Download
md5:92e30041b526c84f4d661d33a71e4aac
289.1 kB Download