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Fully integrated nanoresonator system with attogram/Hz mass resolution

机译:完全集成的纳米谐振器系统,具有原子图/ Hz质量分辨率

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Nanoresonator systems have been fully integrated on pre-processed complementary metal oxide semiconductor (CMOS) chips. The systems have been used for high sensitivity mass sensing in air and vacuum. The resonator system, which consists of a cantilever and structures for electrostatic actuation and capacitive read-out, has been defined by low energy electron beam lithography (EBL) combined with direct write laser lithography (DWL) on top of a radiation sensitive CMOS layer. The fabrication of the nanoresonator system has been conducted as a post-process step. CMOS integration radically decreases the parasitic capacitance, enabling detection and amplification of the resonance signal directly on the chip. Fabricated resonator systems have been designed to have resonance frequencies in the range of 1-1.6 MHz. A mass resolution of 3 ag/Hz has been determined in air by placing a single glycerine drop at the apex of a cantilever and subsequently measuring a frequency shift of 14.8 kHz. The frequency shift corresponds to an added mass of 50 fg, which is close to the estimated weight of 41 fg for the glycerine drop.
机译:纳米谐振器系统已完全集成在预处理的互补金属氧化物半导体(CMOS)芯片上。该系统已用于空气和真空中的高灵敏度质量传感。谐振器系统由悬臂和用于静电驱动和电容式读出的结构组成,已通过在辐射敏感的CMOS层顶部结合低能电子束光刻(EBL)和直接写入激光光刻(DWL)来定义。纳米谐振器系统的制造已作为后处理步骤进行。 CMOS集成从根本上减少了寄生电容,从而可以直接在芯片上检测和放大谐振信号。预制的谐振器系统已被设计为具有1-1.6 MHz的谐振频率。通过在悬臂的顶点放置一个甘油滴,然后测量14.8 kHz的频移,可以确定空气中3 ag / Hz的质量分辨率。频移对应于50 fg的增加质量,该质量接近甘油滴的估计重量41 fg。

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