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Parallel optical readout of cantilever arrays in dynamic mode

机译:动态模式下悬臂阵列的并行光学读出

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摘要

Parallel frequency readout of an array of cantilevers is demonstrated using optical beam deflection with a single laser-diode pair. Multi-frequency addressing makes the individual nanomechanical response of each cantilever distinguishable within the received signal. Addressing is accomplished by exciting the array with the sum of all cantilever resonant frequencies. This technique requires considerably less hardware compared to other parallel optical readout techniques. Readout is demonstrated in beam deflection mode and interference mode. Many cantilevers can be readout in parallel, limited by the oscillators' quality factor and available bandwidth. The proposed technique facilitates parallelism in applications at the nano-scale, including probe-based data storage and biological sensing.
机译:通过使用单个激光二极管对的光束偏转,演示了悬臂阵列的并行频率读出。多频寻址使每个悬臂的单个纳米机械响应在接收信号中可区分。通过用所有悬臂谐振频率之和激励阵列来完成寻址。与其他并行光学读出技术相比,该技术所需的硬件少得多。在光束偏转模式和干涉模式下演示了读数。由于振荡器的品质因数和可用带宽的限制,可以并行读取许多悬臂。所提出的技术促进了纳米级应用中的并行性,包括基于探针的数据存储和生物传感。

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