Ultracompact high-sensitivity biochemical sensor built with photonic crystal nanobeam cavity

Yaocheng Shi
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Abstract

For the utilization as sensors, photonic crystal (PhC) cavities with strong light matter interaction between the optical fields and the analytes are preferred. However, there is a trade-off between sensitivity (S) and quality factor (Q): the optical mode should be distributed more into the target analytes to achieve a higher S; while in order to obtain a high Q, the confinement of the optical mode in the wave-guiding medium have to be large. We demonstrated ultracompact high-sensitivity biochemical sensors utilizing high-Q PhC nanobeam cavities.
基于光子晶体纳米束腔的超紧凑高灵敏度生化传感器
光场与被分析物之间具有强光-物质相互作用的光子晶体(PhC)腔是传感器的首选。然而,在灵敏度(S)和质量因子(Q)之间存在权衡:光学模式应该更多地分布到目标分析物中,以获得更高的S;而为了获得高Q值,导波介质中光模的约束必须很大。我们展示了利用高q PhC纳米束腔的超紧凑高灵敏度生化传感器。
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