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Updated: Jan 8, 2026

Orientational Transition in a Liquid Crystal Triggered by the Thermodynamic Growth of Interfacial Wetting Sheets
Published on: May 15, 2017
Light-Programmable Reorientation of the Crystallographic c Axis of Tellurium Thin Films
Yuta Kobayashi1, Arata Mitsuzuka1, Haruo Kondo1
1Department of Physics, The University of Tokyo, Tokyo 113-0033, Japan.
Abstract:
Tellurium (Te), a two-dimensional material with pronounced structural anisotropy, exhibits exceptional electrical and optical properties that are highly sensitive to its crystallographic orientation. However, conventional syntheses offer limited control over the in-plane alignment of Te's crystallographic c axis, hindering large-scale integration. Here, we report a fundamentally different strategy to manipulate the c-axis orientation of Te thin films using linearly polarized picosecond laser pulses. We show that the c axis can be omnidirectionally reoriented perpendicular to the laser polarization, even in initially polycrystalline films. The reorientation is reversible, allowing for rewritable and spatially selective control of the c-axis orientation postdeposition. This light-driven approach opens a pathway for reconfigurable optoelectronic and photonic devices, such as active metasurfaces and CMOS-compatible architectures.
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