IEEE Photonics Journal (Jan 2021)

Monolithic Germanium-Tin Pedestal Waveguide for Mid-Infrared Applications

  • Simon Chun Kiat Goh,
  • Li Lynn Shiau,
  • Lin Zhang,
  • Bongkwon Son,
  • Qimiao Chen,
  • Jian Zhong,
  • Salim Teddy,
  • Chuan Seng Tan

DOI
https://doi.org/10.1109/JPHOT.2021.3059452
Journal volume & issue
Vol. 13, no. 2
pp. 1 – 11

Abstract

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Germanium-tin (GeSn) is a CMOS-compatible group-IV material. Its growth, however, is plagued by the tendency of Sn segregation and the generation of defects within the GeSn layer when it is grown on the lattice-mismatched substrate. Thus far, thin GeSn has been reported for use in a direct-band gap for near-mid infrared light source and photodetector. In this communication, we report the growth of high quality single-crystalline GeSn (~ 1 μm) with low compressive stress (-0.3%) and low defects (3 × 107 /cm2) on Ge buffer on Si substrate. The as-grown GeSn is then fabricated into pedestal waveguide of width 1.25 μm. An estimated propagation loss of 1.81 dB/cm and bending loss of 0.19 dB/ bend are measured at 3.74 μm. In the absence of Ge-O absorption peaks at 820 and 550 cm-1, under optimal fabrication and measurement condition, the proposed GeSn waveguide might possibly support light propagation for wavelength beyond 25 μm.

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