High-sensitivity waveguide-integrated bolometer based on free-carrier absorption for Si photonic sensors

Author:

Shim Joonsup1ORCID,Lim Jinha1ORCID,Geum Dae-Myeong1,You Jong-Bum2,Yoon Hyeonho1,Kim Joon Pyo1,Baek Woo Jin1,Kim Inki1,Han Jae-Hoon3,Kim SangHyeon12ORCID

Affiliation:

1. Korea Advanced Institute of Science and Technology (KAIST)

2. National Nanofab Center (NNFC),

3. Korea Institute of Science and Technology (KIST),

Abstract

Conventional photon detectors necessarily face critical challenges regarding strong wavelength-selective response and narrow spectral bandwidth, which are undesirable for spectroscopic applications requiring a wide spectral range. With this perspective, herein, we overcome these challenges through a free-carrier absorption-based waveguide-integrated bolometer for infrared spectroscopic sensors on a silicon-on-insulator (SOI) platform featuring a spectrally flat response at near-infrared (NIR) range (1520-1620 nm). An in-depth thermal analysis was conducted with a systematic investigation of geometry dependence on the detectors. We achieved great performances: temperature coefficient of resistance (TCR) of -3.786%/K and sensitivity of -26.75%/mW with a low wavelength dependency, which are record-high values among reported waveguide bolometers so far, to our knowledge. In addition, a clear on-off response with the rise/fall time of 24.2/29.2 µs and a 3-dB roll-off frequency of ∼22 kHz were obtained, sufficient for a wide range of sensing applications. Together with the possibility of expanding an operation range to the mid-infrared (MIR) band, as well as simplicity in the detector architecture, our work here presents a novel strategy for integrated photodetectors covering NIR to MIR at room temperature for the development of the future silicon photonic sensors with ultrawide spectral bandwidth.

Funder

National Research Foundation of Korea

Korea Institute of Science and Technology

National NanoFab Center

BrainKorea 21 (BK21) FOUR

Institute for Information and Communications Technology Promotion

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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