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Mid-infrared high-Q germanium microring resonator

  • Ting Hui Xiao
  • , Ziqiang Zhao
  • , Wen Zhou
  • , Chin Yao Chang
  • , Sze Yun Set
  • , Mitsuru Takenaka
  • , Hon Ki Tsang
  • , Zhenzhou Cheng
  • , Keisuke Goda
  • The University of Tokyo
  • Chinese University of Hong Kong
  • University of California at Los Angeles

Research output: Contribution to journalArticlepeer-review

55 Scopus citations

Abstract

Germanium is a promising material for mid-infrared (MIR) integrated photonics due to its CMOS compatibility and wide transparency window covering the fingerprint spectral region (2-15 μm). However, due to the limited quality and structural configurations of conventional germanium-based integration platforms, the realization of high-Q on-chip germanium resonators in the MIR spectral range remains challenging to date. Here we experimentally demonstrate an air-cladding MIR germanium microring resonator with, to the best of our knowledge, the highest loaded Q-factor of ∼57, 000 across all germanium-based integration platforms to date. A propagation loss of 5.4 dB/cm and a high extinction ratio of 22 dB approaching the critical coupling condition are experimentally realized. These are enabled by our smart-cut methods for developing high-quality germaniumon- insulator wafers and by implementing our suspendedmembrane structure. Our high-Q germanium microring resonator is a promising step towards a number of on-chip applications in the MIR spectral range.

Original languageEnglish
Pages (from-to)2885-2888
Number of pages4
JournalOptics Letters
Volume43
Issue number12
DOIs
StatePublished - 15 Jun 2018
Externally publishedYes

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