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Electrical switching of ferro-rotational order in nanometre-thick 1T-TaS crystals. | LitMetric

AI Article Synopsis

  • Hysteretic switching is crucial for ferroic materials, enabling multifunctional uses.
  • Researchers have achieved electrical control over ferro-rotational domain states in nanometre-thick 1T-TaS crystals by cooling them under an electric field, leading to state switching and domain wall formation.
  • This method allows for durable, reversible, and non-volatile state switching at room temperature, paving the way for advances in ferro-rotational order manipulation and nanoelectronics.

Article Abstract

Hysteretic switching of domain states is a salient characteristic of all ferroic materials and the foundation for their multifunctional applications. Ferro-rotational order is emerging as a type of ferroic order that features structural rotations, but control over state switching remains elusive due to its invariance under both time reversal and spatial inversion. Here we demonstrate electrical switching of ferro-rotational domain states in the charge-density-wave phases of nanometre-thick 1T-TaS crystals. Cooling from the high-symmetry phase to the ferro-rotational phase under an external electric field induces domain state switching and domain wall formation, which is realized in a simple two-terminal configuration using a volt-scale bias. Although the electric field does not couple with the order due to symmetry mismatch, it drives domain wall propagation to give rise to reversible, durable and non-volatile isothermal state switching at room temperature. These results offer a route to the manipulation of ferro-rotational order and its nanoelectronic applications.

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Source
http://dx.doi.org/10.1038/s41565-023-01403-5DOI Listing

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