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Updated: Jun 23, 2026

Fabrication And Characterization Of Photonic Crystal Slow Light Waveguides And Cavities
Published on: November 30, 2012
Bridging the scalability gap in van der Waals light guiding with high refractive index MoTe2
Mikhail K Tatmyshevskiy1, Georgy A Ermolaev2, Dmitriy V Grudinin2
1Moscow Center for Advanced Studies, 20 Kulakova str., Moscow, 141700, Russia.
Abstract:
van der Waals transition metal dichalcogenides, distinguished by a high refractive index and giant optical anisotropy, are promising materials for integrated photonic devices. However, their superior optical properties are nowadays limited to exfoliated samples with only a micrometer scale, whereas industrial integration requires at least cm-scale dimensions. Here, we resolve this problem for MoTe2 by demonstrating that chemical vapor deposition synthesis can provide an identical optical response to the benchmark exfoliated samples in a broad spectral range (250-5,000 nm). It allows us to show high-performance waveguiding properties of MoTe2 with a subwavelength footprint of ∼λ/8 for telecommunication wavelengths. Therefore, our findings reveal MoTe2 as an ideal platform for the next-generation nanophotonics.

