Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where Jiaqi Zhu is active.

Publication


Featured researches published by Jiaqi Zhu.


IEEE Sensors Journal | 2018

High Sensitivity Intensity-Interrogated Bloch Surface Wave Biosensor With Graphene

Zhitao Lin; Yue Jia; Qian Ma; Leiming Wu; Banxian Ruan; Jiaqi Zhu; Xiaoyu Dai; Yuanjiang Xiang

Bloch surface wave (BSW) is a surface state excited within the truncate defect layer at the surface of a dielectric 1-D photonic crystal (1DPC), which has been suggested as an attractive alternative to surface plasmon resonance (SPR) in chemical and biological sensors. In this paper, we propose an intensity-sensitive BSW sensor based on the truncate 1DPC with graphene. By optimizing the thickness of the defect layer and the layer number of graphene, the maximum intensity sensitivity of biosensor can surpass


Sensors | 2017

Ultrasensitive Terahertz Biosensors Based on Fano Resonance of a Graphene/Waveguide Hybrid Structure

Banxian Ruan; Jun Guo; Leiming Wu; Jiaqi Zhu; Qi You; Xiaoyu Dai; Yuanjiang Xiang

3.5times 10^{4}


Sensors | 2018

Improving the Performance of an SPR Biosensor Using Long-Range Surface Plasmon of Ga-Doped Zinc Oxide

Banxian Ruan; Qi You; Jiaqi Zhu; Leiming Wu; Jun Guo; Xiaoyu Dai; Yuanjiang Xiang

/RIU, which is greater than that for the conventional BSW or SPR sensors. With such excellent and interesting performance, we believe that the structure can be useful for many important applications in the field of chemical and biological sensors in the future.


Journal of Physical Chemistry C | 2018

High-Performance Lossy-Mode Resonance Sensor Based on Few-Layer Black Phosphorus

Leiming Wu; Qingkai Wang; Banxian Ruan; Jiaqi Zhu; Qi You; Xiaoyu Dai; Yuanjiang Xiang

Graphene terahertz (THz) surface plasmons provide hope for developing functional devices in the THz frequency. By coupling graphene surface plasmon polaritons (SPPs) and a planar waveguide (PWG) mode, Fano resonances are demonstrated to realize an ultrasensitive terahertz biosensor. By analyzing the dispersion relation of graphene SPPs and PWG, the tunable Fano resonances in the terahertz frequency are discussed. It is found that the asymmetric lineshape of Fano resonances can be manipulated by changing the Fermi level of graphene, and the influence of the thickness of coupling layer and air layer in sandwich structure on the Fano resonances is also discussed in detail. We then apply the proposed Fano resonance to realize the ultrasensitive terahertz biosensors, it is shown that the highest sensitivities of 3260 RIU−1 are realized. Our result is two orders of a conventional surface plasmon resonance sensor. Furthermore, we find that when sensing medium is in the vicinity of water in THz, the sensitivity increases with increasing refractive index of the sensing medium.


Sensors and Actuators B-chemical | 2018

Terahertz imaging sensor based on the strong coupling of surface plasmon polaritons between PVDF and graphene

Jiaqi Zhu; Banxian Ruan; Qi You; Jun Guo; Xiaoyu Dai; Yuanjiang Xiang

Transparent conducting oxides (TCOs) have appeared in the past few years as potential plasmonic materials for the development of optical devices in the near infrared regime (NIR). However, the performance of biosensors with TCOs has been limited in sensitivity and figure of merit (FOM). To improve the performance of the biosensors with TCOs, a biosensor based on long-range surface plasmon with Ga-doped zinc oxide (GZO) is proposed. It is shown that a larger FOM with a 2~7 times enhancement compared to the traditional surface plasmon polaritons (SPPs) sensor and higher detection accuracy (DA) can be realized in our proposed sensor compared with the surface plasmon resonance (SPR) sensor with GZO. Therefore, this sensor can be used to detect biological activity or chemical reactions in the near infrared region.


Optics Express | 2018

Fano resonance in double waveguides with graphene for ultrasensitive biosensor

Banxian Ruan; Qi You; Jiaqi Zhu; Leiming Wu; Jun Guo; Xiaoyu Dai; Yuanjiang Xiang


Journal of Physics D | 2017

Low-threshold optical bistability in a metasurface with graphene

Jun Guo; Banxian Ruan; Jiaqi Zhu; Xiaoyu Dai; Yuanjiang Xiang; Han Zhang


IEEE Sensors Journal | 2018

Terahertz Biochemical Sensor Based on Strong Coupling Between Waveguide Mode and Surface Plasmons of Double-Layer Graphene

Banxian Ruan; Qi You; Jiaqi Zhu; Leiming Wu; Jun Guo; Xiaoyu Dai; Yuanjiang Xiang


IEEE Photonics Journal | 2018

Highly Sensitive Terahertz Gas Sensor Based on Surface Plasmon Resonance With Graphene

Yuanjiang Xiang; Jiaqi Zhu; Leiming Wu; Qi You; Banxian Ruan; Xiaoyu Dai


IEEE Photonics Journal | 2018

Ultrasensitive terahertz imaging sensors based on the strong coupling of surface phonon polariton and graphene surface plasmon polariton

Jiaqi Zhu; Banxian Ruan; Qi You; Leiming Wu; Houzhi Cai; Xiaoyu Dai; Yuanjiang Xiang

Collaboration


Dive into the Jiaqi Zhu's collaboration.

Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar

Qi You

Shenzhen University

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Researchain Logo
Decentralizing Knowledge