Chiral charge density wave in 1T- and 4Hb-TaS2: the role of interlayer coupling

  • Gofman R
  • Dishi A
  • Bae H
  • et al.
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Abstract

We use micro-angle-resolved photoemission spectroscopy (micro-ARPES) to investigate chiral charge density waves (CDWs) in 4Hb-TaS$_2$ with micron-scale spatial resolution. In the 1T layers of 4Hb-TaS$_2$, we uncover coexisting left- and right-handed CDW domains and resolve four distinct spectral patterns arising from the interplay of chirality and rotational stacking. In contrast, bulk 1T-TaS$_2$ exhibits a uniform chirality. In addition, 4Hb-TaS$_2$ shows negligible out-of-plane dispersion of the 1T-derived bands, in contrast to the pronounced interlayer coupling observed in bulk 1T-TaS$_2$. Density functional theory (DFT) calculations corroborate this picture, revealing that the interlayer interaction of the chiral order in 4Hb-TaS$_2$ is nearly two orders of magnitude weaker than in the 1T polytype. Our findings establish 4Hb-TaS$_2$ as a quasi-two-dimensional platform for exploring tunable chiral CDW phenomena.

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APA

Gofman, R. A., Dishi, A., Bae, H., Nitzav, Y., Mangel, I., Ragoler, N., … Kanigel, A. (2026). Chiral charge density wave in 1T- and 4Hb-TaS2: the role of interlayer coupling. Npj Quantum Materials. https://doi.org/10.1038/s41535-026-00889-1

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