科技导报
科技導報
과기도보
SCIENCE & TECHNOLOGY REVIEW
2010年
1期
51-54
,共4页
陈建军%木拉提·哈米提%胡彦婷%孙静%孔德伟%艾克热木·阿西木
陳建軍%木拉提·哈米提%鬍彥婷%孫靜%孔德偉%艾剋熱木·阿西木
진건군%목랍제·합미제%호언정%손정%공덕위%애극열목·아서목
长周期光纤光栅%生物膜层传感器%啁啾%谐振波长
長週期光纖光柵%生物膜層傳感器%啁啾%諧振波長
장주기광섬광책%생물막층전감기%조추%해진파장
long period fiber grating%bio-layer sensor%,chirp%resonant wavelengs
基于耦合模理论和阶跃折射率单模光纤三层模型包层模理论,可在长周期光纤光栅(LPG)光纤包层外涂制特定的抗体作为生物活性膜层,并通过生物活性膜层折射率的变化来检验血液中是否存在对应的抗原.研究结果表明,当在LPG内部引入啁啾后,可提高LPG传感器的谐振波长偏移的灵敏度,但透射光强峰值会有相应的下降;随着啁啾参数的增加,透射光强峰值变化不大.谐振波长偏移随折射率的变化更为敏感.但当啁啾参数达到一定的量值时,这种偏移量相对较小.实验选用折射率同抗原、抗体接近的硅化膜作为成膜基底材料,基底膜层厚度可选择在约120nm,此时的波长位移线性度好,有利于实验中的测定.
基于耦閤模理論和階躍摺射率單模光纖三層模型包層模理論,可在長週期光纖光柵(LPG)光纖包層外塗製特定的抗體作為生物活性膜層,併通過生物活性膜層摺射率的變化來檢驗血液中是否存在對應的抗原.研究結果錶明,噹在LPG內部引入啁啾後,可提高LPG傳感器的諧振波長偏移的靈敏度,但透射光彊峰值會有相應的下降;隨著啁啾參數的增加,透射光彊峰值變化不大.諧振波長偏移隨摺射率的變化更為敏感.但噹啁啾參數達到一定的量值時,這種偏移量相對較小.實驗選用摺射率同抗原、抗體接近的硅化膜作為成膜基底材料,基底膜層厚度可選擇在約120nm,此時的波長位移線性度好,有利于實驗中的測定.
기우우합모이론화계약절사솔단모광섬삼층모형포층모이론,가재장주기광섬광책(LPG)광섬포층외도제특정적항체작위생물활성막층,병통과생물활성막층절사솔적변화래검험혈액중시부존재대응적항원.연구결과표명,당재LPG내부인입조추후,가제고LPG전감기적해진파장편이적령민도,단투사광강봉치회유상응적하강;수착조추삼수적증가,투사광강봉치변화불대.해진파장편이수절사솔적변화경위민감.단당조추삼수체도일정적량치시,저충편이량상대교소.실험선용절사솔동항원、항체접근적규화막작위성막기저재료,기저막층후도가선택재약120nm,차시적파장위이선성도호,유리우실험중적측정.
According to the Coupling Mode Theory (CMT) and the simplified three-layered model of the step-index single mode optical fiber, the variation of the bioactive layer refractive index may be used to detect whether the corresponding antigen is in blood by coating an idiosyncratic bioactive layer on the cladding of Long Period fiber Gratings (LPG). The results show that, with the introduction of chirp in LPG, the sensitivity of the resonant wavelength shift is improved, but the peak of transmission intensity is lowered. With the further increase of chirp, the peak of transmission intensity varies little and the resonant wavelength shift becomes more sensitive. The variation of wavelength shift is decreased gradually when the chirp reaches a certain magnitude. Silicious layer is used as fundus layer since its refractive index is much the same as that of antigen and antibody. The thickness of fundus layer is about 120rim, which amounts to the ideal linear scale of wavelength shift for better measurements.