TiOx/Ti/TiOx Tri-Layer Film-Based Waveguide Bolometric Detector for On-Chip Si Photonic Sensor

Authors
Shim, JoonsupLim, JinhaGeum, Dae-MyeongYou, Jong-BumYoon, HyeonhoKim, Joon PyoBaek, Woo JinHan, Jae-HoonKim, Sanghyeon
Issue Date
2022-04
Publisher
IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
Citation
IEEE TRANSACTIONS ON ELECTRON DEVICES, v.69, no.4, pp.2151 - 2158
Abstract
In this article, we experimentally demonstrate an on-chip optical power monitoring at the near-infrared spectral region (1520-1600 nm) using the waveguide bolometric detector with a TiOx/Ti/TiOx tri-layer film based on the silicon-on-insulator (SOI) platform. For the incident light absorption causing a heat generation, a heavily doped (n(+)) Si waveguide is introduced to utilize the mechanism of free-carrier absorption (FCA), and a metal (Au) strip is deposited onto the n(+) Si waveguide to further enhance the light absorption. A bolometric material of TiOx/Ti/TiOx tri-layer film is integrated for the thermal-to-electrical conversion. As a result, it exhibits superior performances, which are the temperature coefficient of resistance (TCR) of -2.296%/K and the maximum sensitivity of -46.45%/mW with a low wavelength-dependency. In addition, a rapid response time is obtained with the rise/fall time of 24.6 mu s/29.8 mu s, which is enough for a variety of optical sensing applications. This work demonstrates the waveguide-based bolometric photodetection using the FCA effect, for the first time to our knowledge, which can also be simply extended for the operation wavelength range to the mid-infrared (MIR) spectral region for bio/chemical sensing applications.
Keywords
FREE-CARRIER ABSORPTION; MIDINFRARED PHOTONICS; SILICON; PHOTODETECTOR; PLATFORMS; WAFER; WATER; Bolometer; free-carrier absorption (FCA); integrated optical sensor; photodetector (PD); silicon photonic sensor; silicon photonics; silicon-on-insulator (SOI); thermal detector; titanium oxide
ISSN
0018-9383
URI
https://pubs.kist.re.kr/handle/201004/115295
DOI
10.1109/TED.2021.3132264
Appears in Collections:
KIST Article > 2022
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