4.6 Article

Biosensing on a Plasmonic Dual-Band Perfect Absorber Using Intersection Nanostructure

期刊

ACS OMEGA
卷 7, 期 1, 页码 1139-1149

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsomega.1c05714

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资金

  1. University Research Grant of Universiti Brunei Darussalam [UBD/RSCH/1.9/FICBF(b)/2021/009]
  2. Ministry of Science and Technology of Taiwan [MOST 110-2112-M-019-004]

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The paper introduces a new perfect plasmonic absorber (PPA) with triple absorption channels and high sensitivity for biosensing applications. Through finite element method simulations, the absorber's characteristics in terms of absorption spectrum, electric field intensity, magnetic flux density, and surface charge distribution are elucidated.
Optical absorbers with multiple absorption channels are required in integrated optical circuits and have always been a challenge in visible and near-infrared (NIR) region. This paper proposes a perfect plasmonic absorber (PPA) that consists of a closed loop and a linked intersection in a unit cell for sensitive biosensing applications. We elucidate the physical nature of finite element method simulations through the absorptance spectrum, electric field intensity, magnetic flux density, and surface charge distribution. The designed PPA achieves triple channels, and the recorded dual-band absorptance reaches 99.64 and 99.00% nm, respectively. Besides, the sensitivity can get 1000.00 and 650 nm/RIU for mode 1 and mode 2, respectively. Our design has a strong electric and magnetic field coupling arising from the mutual inductance and the capacitive coupling in the proposed plasmonic system. Therefore, the designed structure can serve as a promising option for biosensors and other optical devices. Here, we illustrated two examples, i.e., detecting cancerous cells and diabetes cells.

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