Polarization invariant plasmonic nanostructures for sensing applications

被引:0
|
作者
Landobasa Y. M. Tobing
Geat-Yee Goh
Aaron D. Mueller
Lin Ke
Yu Luo
Dao-Hua Zhang
机构
[1] Nanophotonics Lab,
[2] School of EEE,undefined
[3] OPTIMUS,undefined
[4] Nanyang Technological University,undefined
[5] 50 Nanyang Avenue,undefined
[6] Institute of Material Research and Engineering,undefined
[7] Agency of Science,undefined
[8] Technology (A*Star),undefined
[9] 3 Research Link,undefined
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Optics-based sensing platform working under unpolarized light illumination is of practical importance in the sensing applications. For this reason, sensing platforms based on localized surface plasmons are preferred to their integrated optics counterparts for their simple mode excitation and inexpensive implementation. However, their optical response under unpolarized light excitation is typically weak due to their strong polarization dependence. Herein, the role of rotational symmetry for realizing robust sensing platform exhibiting strong optical contrast and high sensitivity is explored. Specifically, gammadion and star-shaped gold nanostructures with different internal and external rotational symmetries are fabricated and studied in detail, from which their mode characteristics are demonstrated as superposition of their constituent longitudinal plasmons that are in conductive coupling with each other. We demonstrate that introducing and increasing internal rotational symmetry would lead to the enhancement in optical contrast up to ~3x under unpolarized light illumination. Finally, we compare the sensing performances of rotationally symmetric gold nanostructures with a more rigorous figure-of-merit based on sensitivity, Q-factor, and spectral contrast.
引用
收藏
相关论文
共 50 条
  • [1] Polarization invariant plasmonic nanostructures for sensing applications
    Tobing, Landobasa Y. M.
    Goh, Geat-Yee
    Mueller, Aaron D.
    Ke, Lin
    Luo, Yu
    Zhang, Dao-Hua
    SCIENTIFIC REPORTS, 2017, 7
  • [2] Plasmonic effects in composite metal nanostructures for sensing applications
    Chau, Yuan-Fong Chou
    Chao, Chung-Ting Chou
    Chiang, Hai-Pang
    Lim, Chee Ming
    Voo, Nyuk Yoong
    Mahadi, Abdul Hanif
    JOURNAL OF NANOPARTICLE RESEARCH, 2018, 20 (07)
  • [3] High Aspect Ratio Plasmonic Nanostructures for Sensing Applications
    Paeivaenranta, Birgit
    Merbold, Hannes
    Giannini, Reto
    Buechi, Luca
    Gorelick, Sergey
    David, Christian
    Loeffler, Joerg F.
    Feurer, Thomas
    Ekinci, Yasin
    ACS NANO, 2011, 5 (08) : 6374 - 6382
  • [4] Plasmonic effects in composite metal nanostructures for sensing applications
    Yuan-Fong Chou Chau
    Chung-Ting Chou Chao
    Hai-Pang Chiang
    Chee Ming Lim
    Nyuk Yoong Voo
    Abdul Hanif Mahadi
    Journal of Nanoparticle Research, 2018, 20
  • [5] Polarization state-based refractive index sensing with plasmonic nanostructures
    Liu, Shao-Ding
    Qi, Xin
    Zhai, Wu-Chao
    Chen, Zhi-Hui
    Wang, Wen-Jie
    Han, Jun-Bo
    NANOSCALE, 2015, 7 (47) : 20171 - 20179
  • [6] Positively-charged plasmonic nanostructures for SERS sensing applications
    Turino, Mariacristina
    Pazos-Perez, Nicolas
    Guerrini, Luca
    Alvarez-Puebla, Ramon A.
    RSC ADVANCES, 2021, 12 (02) : 845 - 859
  • [7] Optical sensing with plasmonic nanostructures
    Horrer, Andreas
    Haas, Jonas
    Blach, Patricia S.
    Kayacik, Aylin
    Henken-Mellies, Valentin
    Rau, Sabrina
    Krieg, Katrin
    Freudenberger, Kathrin
    Leidner, Lothar
    Gauglitz, Guenter
    Kern, Dieter P.
    Fleischer, Monika
    2017 IEEE 12TH INTERNATIONAL CONFERENCE ON NANO/MICRO ENGINEERED AND MOLECULAR SYSTEMS (NEMS), 2017,
  • [8] Novel Apolar Plasmonic Nanostructures with Extended Optical Tunability for Sensing Applications
    de la Chapelle, Marc Lamy
    Guillot, Nicolas
    Fremaux, Benoit
    Shen, Hong
    Toury, Timothee
    PLASMONICS, 2013, 8 (02) : 475 - 480
  • [9] Synthesis, Assembly, Optical Properties, and Sensing Applications of Plasmonic Gap Nanostructures
    Kim, Jae-Myoung
    Lee, Chungyeon
    Lee, Yeonhee
    Lee, Jinhaeng
    Park, So-Jung
    Park, Sungho
    Nam, Jwa-Min
    ADVANCED MATERIALS, 2021, 33 (46)
  • [10] Novel Apolar Plasmonic Nanostructures with Extended Optical Tunability for Sensing Applications
    Marc Lamy de la Chapelle
    Nicolas Guillot
    Benoît Frémaux
    Hong Shen
    Timothée Toury
    Plasmonics, 2013, 8 : 475 - 480