High-performance Ge/Si electro-absorption optical modulator up to 85°C and its highly efficient photodetector operation

Author:

Fujikata Junichi1ORCID,Noguchi Masataka1,Katamawari Riku2,Inaba Kyosuke2,Ono Hideki13,Shimura Daisuke13,Onawa Yosuke13,Yaegashi Hiroki13,Ishikawa Yasuhiko2

Affiliation:

1. Photonics Electronics Technology Research Association (PETRA),

2. Toyohashi University of Technology

3. Oki Electric Industry Co., Ltd.,

Abstract

We studied a high-speed Ge/Si electro-absorption optical modulator (EAM) evanescently coupled with a Si waveguide of a lateral p–n junction for a high-bandwidth optical interconnect over a wide range of temperatures from 25 °C to 85 °C. We demonstrated 56 Gbps high-speed operation at temperatures up to 85 °C. From the photoluminescence spectra, we confirmed that the bandgap energy dependence on temperature is relatively small, which is consistent with the shift in the operation wavelengths with increasing temperature for a Ge/Si EAM. We also demonstrated that the same device operates as a high-speed and high-efficiency Ge photodetector with the Franz-Keldysh (F-K) and avalanche-multiplication effects. These results demonstrate that the Ge/Si stacked structure is promising for both high-performance optical modulators and photodetectors integrated on Si platforms.

Funder

Japan Society for the Promotion of Science

New Energy and Industrial Technology Development Organization

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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