arXiv · 2605.00521
Induced discommensurations in the lock-in transition of charge-density waves
Abstract
We studied McMillan's free energy of the lock-in transition in charge-density waves. The wave profiles near the critical value were obtained by numerical annealing. First, we demonstrated that our method reproduces the previous studies. The obtained wave profiles include discommensurations near the critical value. Then, we calculated possible wave profiles in the commensurate state. We found that discommensurations are able to be excited in the commensurate state, leading the system to turn into an incommensurate state. We proposed that these wave profiles result from topological invariants. Moreover, excitation of the discommensurations is favorable for the direction to the original wavelength of the incommensurate state. This is attributed to the nature of McMillan's free energy. The current-induced incommensurations, which we discovered with the diffraction study of $o$-TaS$_3$ et al., J. Phys. Soc. Jpn. 77, 093708 (2008)], is consistent with this study.
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Katsuhiko Inagaki, Satoshi Tanda. 2026-05-01. Induced discommensurations in the lock-in transition of charge-density waves. https://doi.org/10.7566/jpsj.95.083702
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