Time–frequency joint mappings of a terahertz metasurface for multi-dimensional analysis of biological cells

Author:

Zhang Zhang1,Guo Xinyue1,Yang Maosheng2ORCID,Yang Qili2,Yan Xin2,Liang Lanju23,Liu Longhai4,Yao Jianquan3

Affiliation:

1. Changshu Institute of Technology

2. Zaozhuang University

3. Tianjin University

4. Advantest (China) Co., Ltd.

Abstract

Traditional fast Fourier transform is used to extract the frequency component at the cost of losing the time domain, which is critical for metasurface biosensing. In this Letter, a more comprehensive algorithm, continuous wavelet transform (CWT), to process signals from THz time-domain spectroscopy is introduced. By comparing the metasurface-enhanced 2D time–frequency mappings (TFMs) of HaCaT and HSC3 cells, the two types of biological cells can be clearly differentiated, showing the great potential of CWT in the label-free recognition of biological cells. Also, the 2D TFMs serve as effective visualization indicators, successfully detecting the concentration of cancer cells characterized by being label free and low cost. In addition, the 2D TFMs of different metasurfaces under the same cell concentration reveal the correlation of TFMs and localized fields. Such a feature provides evidence of an interaction between biological cells and electromagnetic waves, implying the absorption of THz radiation by biological cells can be effectively controlled by properly designing split ring resonators (SRRs) of metasurfaces.

Funder

National Natural Science Foundation of China

National Key Research and Development Program of China

Natural Science Foundation of Shandong Province

Program of Independent and Achievement Transformation Plan for Zao Zhuang

The Funding by Qingchuang Science and Technology Plan of Shandong Universities

Taishan Scholar Project of Shandong Province

Project Special Funding of Qingtan Scholar

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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