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Playing the notes of DNA with light: extremely high frequency nanomechanical oscillations

机译:玩的DNA与光:非常高频纳米机械振荡

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摘要

We use a double nanohole (DNH) optical tweezer with two trapping lasers beating to excite the vibrational modes of single-stranded DNA (ssDNA) fragments in the extremely high frequency range. We find the resonant vibration frequency of a 20 base ssDNA to be 40 GHz. We show that the change in the resonant frequency for different lengths of the DNA strand is in good agreement with one dimensional lattice vibration theory. Thus the DNH tweezer system could distinguish between different lengths of DNA strands with resolution down to a few bases. By varying the base sequence and length, it is possible to adjust the resonance frequency vibration spectrum. The technique shows the potential for use in sequencing applications if we can improve the resolution of the present system to detect changes in resonant frequency for a single base change in a given sequence. The technique is single-molecule and label-free as compared to the existing methods used for DNA characterization like gel electrophoresis.
机译:我们使用一个双nanohole光学镊子(杀毒软件)有两个捕获激光激发的跳动振动模式的单链DNA (ssDNA)碎片在极高的频率范围。我们找到一个20的共振振动频率基地ssDNA 40 GHz。在不同长度的共振频率DNA链的与一个好的协议维晶格振动理论。杀毒软件用镊子钳系统可以区分不同长度DNA链的决议几个基地。和长度,可以调整共振频率振动光谱。技术显示了潜在的使用如果我们能提高测序应用程序解决目前的系统检测为单个基础共振频率的变化一个给定的序列的变化。单分子和label-free相比现有的方法用于DNA鉴定凝胶电泳。

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