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    • 1. 发明申请
    • PLASMONIC ENHANCEMENT OF WHISPERING GALLERY MODE BIOSENSORS
    • 通过画廊模式生物传感器的等离子体增强
    • US20120069331A1
    • 2012-03-22
    • US13205756
    • 2011-08-09
    • Siyka SHOPOVAStephen ArnoldRaaj Haresh Rajmangal
    • Siyka SHOPOVAStephen ArnoldRaaj Haresh Rajmangal
    • G01J3/44G01N21/55
    • G01N21/554G01N21/7746
    • A sensor for determining the presence or concentration of a target entity in a medium is described, and includes (a) an optical waveguide; (b) a microresonator optically coupled with the optical waveguide such that light within the optical waveguide induces a resonant mode within the microresonator at an equator region (or a mode volume); and (c) at least one plasmonic nanoparticle adsorbed onto a surface area of the microresonator within the equator region (or the mode volume) such that light inducing a resonant mode within the microresonator also causes a plasmonic resonance in the at least one plasmonic nanoparticle. Detection methods for using such sensors are also described. Finally, methods, involving the use of carousel forces, for fabricating such sensors are also described.
    • 描述了用于确定介质中目标实体的存在或集中的传感器,并且包括(a)光波导; (b)与所述光波导光学耦合的微谐振器,使得所述光波导内的光在赤道区域(或模式体积)下在微谐振器内引起谐振模式; 和(c)至少一种等离子体激元纳米粒子吸附在赤道区域内的微谐振器的表面区域(或模式体积)上,使得在微谐振器内产生共振模式的光也导致至少一种等离子体激元纳米粒子中的等离子体共振。 还描述了使用这种传感器的检测方法。 最后,还描述了涉及使用转盘力的方法来制造这种传感器。
    • 3. 发明授权
    • Plasmonic enhancement of whispering gallery mode biosensors
    • 等离子体增强的耳语画廊模式生物传感器
    • US08493560B2
    • 2013-07-23
    • US13205756
    • 2011-08-09
    • Siyka ShopovaStephen ArnoldRaaj Haresh Rajmangal
    • Siyka ShopovaStephen ArnoldRaaj Haresh Rajmangal
    • G01J3/44
    • G01N21/554G01N21/7746
    • A sensor for determining the presence or concentration of a target entity in a medium is described, and includes (a) an optical waveguide; (b) a microresonator optically coupled with the optical waveguide such that light within the optical waveguide induces a resonant mode within the microresonator at an equator region (or a mode volume); and (c) at least one plasmonic nanoparticle adsorbed onto a surface area of the microresonator within the equator region (or the mode volume) such that light inducing a resonant mode within the microresonator also causes a plasmonic resonance in the at least one plasmonic nanoparticle. Detection methods for using such sensors are also described. Finally, methods, involving the use of carousel forces, for fabricating such sensors are also described.
    • 描述了用于确定介质中目标实体的存在或集中的传感器,并且包括(a)光波导; (b)与所述光波导光学耦合的微谐振器,使得所述光波导内的光在赤道区域(或模式体积)下在微谐振器内引起谐振模式; 和(c)至少一种等离子体激元纳米粒子吸附在赤道区域内的微谐振器的表面区域(或模式体积)上,使得在微谐振器内产生共振模式的光也导致至少一种等离子体激元纳米粒子中的等离子体共振。 还描述了使用这种传感器的检测方法。 最后,还描述了涉及使用转盘力的方法来制造这种传感器。