Gao Naikun, Zhao Dongfang, Jia Ran, Liu Duo
State Key Laboratory of Crystal Materials, Shandong University, 27 South Shanda Road, Jinan, Shandong 250100, P. R. China.
Sci Rep. 2016 Jan 27;6:19935. doi: 10.1038/srep19935.
We present here a combined theoretical and experimental investigation on effective excitation of microcantilever by using photoacoustic waves. The photoacoustic waves arose from a vibrating Al foil induced by an intensity-modulated laser. We demonstrate that, superior to photothermal excitation, this new configuration avoids direct heating of the microcantilever, thus minimizing undesired thermal effects on the vibration of microcantilever, while still keeps the advantage of being a remote, non-contact excitation method. We also measured the vibration amplitude of the microcantilever as a function of distance between the microcantilever and the Al foil and found that the amplitudes decay gradually according to the inverse distance law. This method is universal and can be adopted in bio-microelectromechanical systems (BioMEMs) for the detection of small signals where detrimental thermal effects must be avoided.
我们在此展示了一项关于利用光声波有效激发微悬臂梁的理论与实验相结合的研究。光声波由强度调制激光激发振动的铝箔产生。我们证明,相较于光热激发,这种新配置避免了对微悬臂梁的直接加热,从而将对微悬臂梁振动的不良热效应降至最低,同时仍保留了作为一种远程、非接触式激发方法的优势。我们还测量了微悬臂梁的振动幅度作为其与铝箔之间距离的函数,发现幅度根据反比距离定律逐渐衰减。该方法具有通用性,可应用于生物微机电系统(BioMEMs)中检测必须避免有害热效应的小信号。