Theoretical and experimental researches on a PCF-based SPR sensor

Pi-bin Bing , Zhong-yang Li , Jian-quan Yao , Ying Lu , Zhi-gang Di , Xin Yan

Optoelectronics Letters ›› 2012, Vol. 8 ›› Issue (4) : 245 -248.

PDF
Optoelectronics Letters ›› 2012, Vol. 8 ›› Issue (4) : 245 -248. DOI: 10.1007/s11801-012-1182-4
Article

Theoretical and experimental researches on a PCF-based SPR sensor

Author information +
History +
PDF

Abstract

A photonic crystal fiber based surface plasmon resonance (PCF-SPR) sensor is simulated by finite element method and experimentally realized. The calculations show that there is an obvious loss peak in the vicinity of 1.2 m while the PCF of LMA-8 is used as a sensor. The suspension of silver nanoparticle mixed with hexadecyl trimethyl ammonium bromide (CTAB) is inhaled into the PCF to form a metal film which can be stimulated to generate plasmon in the experiment. A spectrometer is utilized to detect the continuous broadband transmission spectrum from the PCF. The experimental results verify the loss peak. Compared with the theoretical calculations, the offset of loss peak about 40 nm can be acceptable, because the uniformity of the metal coating is difficult to guarantee and the film thickness is difficult to control.

Keywords

Silver Nanoparticle / Surface Plasmon Resonance / Photonic Crystal Fiber / Effective Refractive Index / Plasmon Mode

Cite this article

Download citation ▾
Pi-bin Bing, Zhong-yang Li, Jian-quan Yao, Ying Lu, Zhi-gang Di, Xin Yan. Theoretical and experimental researches on a PCF-based SPR sensor. Optoelectronics Letters, 2012, 8(4): 245-248 DOI:10.1007/s11801-012-1182-4

登录浏览全文

4963

注册一个新账户 忘记密码

References

[1]

SlavikR., HomolaJ., CtyrokyJ.. Sens. Actuators B, 1998, 51: 311

[2]

HomolaJ., YeeS. S., GauglitzG.. Sens. Actuators B, 1999, 54: 3

[3]

LeeB.. Opt. Fiber Technology, 2003, 9: 57

[4]

XingJ. W., ZhuS., WangT. Y., ChenN., ChenZ. Y.. J. Optoelectron. Laser, 2011, 22: 693

[5]

DiH. T., FuY. L., LiuR. Q.. J. Optoelectron. Laser, 2011, 22: 507

[6]

HassaniA., SkorobogatiyM.. Opt. Exp., 2006, 14: 11616

[7]

HassaniA., SkorobogatiyM.. J. Opt. Soc. Am. B, 2007, 24: 1423

[8]

SharmaA. K., GuptaB. D.. Opt. Commun., 2005, 245: 159

[9]

SharmaA. K., GuptaB. D.. Nanotechnology, 2006, 17: 124

[10]

JohnsonP. B., ChristyR. W.. Phys. Rev. B, 1972, 6: 4370

[11]

AslanM. M., WriedtT.. J. Nanopart. Res., 2010, 12: 3077

[12]

PalikE. D.. Handbook of Optical Constants of Solids, 1985, Orlando, Academic: 350

[13]

SharmaA. K., GuptaB. D.. J. Opt. A: Pure Appl. Opt., 2007, 9: 682

[14]

SazioP. J. A., Amezcua-CorreaA., FinlaysonC. E., HayesJ. R., ScheidemantelT. J., BarilN. F., JacksonB. R., WonD. J., ZhangF., MargineE. R., GopalanV., CrespiV. H., BaddingJ. V.. Science, 2006, 311: 1583

AI Summary AI Mindmap
PDF

135

Accesses

0

Citation

Detail

Sections
Recommended

AI思维导图

/