A New Family of Ultralow Loss Reversible Phase‐Change Materials for Photonic Integrated Circuits: Sb 2 S 3 and Sb 2 Se 3

Новое семейство обратимых материалов с ультранизкими потерями и фазовым переходом для фотонных интегральных схем: Sb₂S₃ и Sb₂Se₃
Daniel W. Hewak, Otto L. Muskens, Matthew Delaney, Ioannis Zeimpekis, Daniel Lawson
2020-07-09

Sb2S3 and Sb2Se3photonic integrated circuitsprogrammable phase controlreversible optical switchingultralow-loss phase-change materials
Abstract Phase‐change materials (PCMs) are seeing tremendous interest for their use in reconfigurable photonic devices; however, the most common PCMs exhibit a large absorption loss in one or both states. Here, Sb 2 S 3 and Sb 2 Se 3 are demonstrated as a class of low loss, reversible alternatives to the standard commercially available chalcogenide PCMs. A contrast of refractive index of Δ n = 0.60 for Sb 2 S 3 and Δ n = 0.77 for Sb 2 Se 3 is reported, while maintaining very low losses ( k < 10 −5 ) in the telecommunications C‐band at 1550 nm. With a stronger absorption in the visible spectrum, Sb 2 Se 3 allows for reversible optical switching using conventional visible wavelength lasers. Here, a stable switching endurance of better than 4000 cycles is demonstrated. To deal with the essentially zero intrinsic absorption losses, a new figure of merit (FOM) is introduced taking into account the measured waveguide losses when integrating these materials onto a standard silicon photonics platform. The FOM of 29 rad phase shift per dB of loss for Sb 2 Se 3 outperforms Ge 2 Sb 2 Te 5 by two orders of magnitude and paves the way for on‐chip programmable phase control. These truly low‐loss switchable materials open up new directions in programmable integrated photonic circuits, switchable metasurfaces, and nanophotonic devices.
1
A waveguide-based figure of merit reaches 29 radians of phase shift per decibel of loss for Sb2Se3, outperforming Ge2Sb2Te5 by two orders of magnitude.
2
Sb2S3 and Sb2Se3 are demonstrated as reversible phase-change materials with ultralow telecommunications-band absorption losses, maintaining k < 10^-5 at 1550 nm.
3
Sb2Se3 supports reversible optical switching with conventional visible-wavelength lasers because of its stronger visible-spectrum absorption.
4
Stable switching endurance exceeding 4000 cycles is demonstrated for Sb2Se3.
5
The materials provide refractive-index contrasts of Δn = 0.60 for Sb2S3 and Δn = 0.77 for Sb2Se3.

Sb2S3 and Sb2Se3 reversible phase-change materials integrated onto silicon photonic platforms

Their low-loss reversible optical switching performance, including refractive-index contrast, switching endurance, and phase-shift efficiency at telecommunications wavelengths

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2020-07-09
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Daniel W. Hewak
Otto L. Muskens
Matthew Delaney
Ioannis Zeimpekis
Daniel Lawson
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