Overcoming the temperature increase hurdle in photonic crystal molecular tweezers

X. Serey, Yih-Fan Chen, R. Fain, Pilgyu Kang, D. Erickson
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Abstract

We study the thermal effects on flow and transport of species near 1550nm silicon photonic crystal nano-tweezers. With a silicon nitride based 1064nm alternative we reduce heating to 0.3K temperature increase and demonstrate molecular tweezing.
克服光子晶体分子镊子的温升障碍
研究了1550nm硅光子晶体纳米镊子附近的热效应对物质流动和输运的影响。通过基于氮化硅的1064nm替代方案,我们将加热降低到0.3K温度升高,并演示了分子镊子。
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