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利用柔和相互作用解锁原子力显微镜中的高次谐波。

Unlocking higher harmonics in atomic force microscopy with gentle interactions.

机构信息

Departament de Disseny i Programació de Sistemes Electrònics, UPC - Universitat Politècnica de Catalunya Av. Bases, 61, 08242 Manresa (Barcelona), Spain.

ICN2 - Institut Catala de Nanociencia i Nanotecnologia, Campus UAB, 08193 Bellaterra (Barcelona), Spain.

出版信息

Beilstein J Nanotechnol. 2014 Mar 11;5:268-277. doi: 10.3762/bjnano.5.29. eCollection 2014.

Abstract

In dynamic atomic force microscopy, nanoscale properties are encoded in the higher harmonics. Nevertheless, when gentle interactions and minimal invasiveness are required, these harmonics are typically undetectable. Here, we propose to externally drive an arbitrary number of exact higher harmonics above the noise level. In this way, multiple contrast channels that are sensitive to compositional variations are made accessible. Numerical integration of the equation of motion shows that the external introduction of exact harmonic frequencies does not compromise the fundamental frequency. Thermal fluctuations are also considered within the detection bandwidth of interest and discussed in terms of higher-harmonic phase contrast in the presence and absence of an external excitation of higher harmonics. Higher harmonic phase shifts further provide the means to directly decouple the true topography from that induced by compositional heterogeneity.

摘要

在动态原子力显微镜中,纳米级特性被编码在更高的谐波中。然而,当需要温和的相互作用和最小的侵入性时,这些谐波通常是不可检测的。在这里,我们提出了外部驱动任意数量的精确高于噪声水平的更高谐波。通过这种方式,可以获得多个对成分变化敏感的对比度通道。运动方程的数值积分表明,外部引入精确的谐波频率不会影响基频。还考虑了感兴趣的检测带宽内的热波动,并根据存在和不存在外部更高谐波激励的情况下的更高谐波相位对比进行了讨论。更高的谐波相移进一步提供了直接从由成分异质性引起的形貌中解耦的手段。

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