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Application of a Modulating Technique to Detect Near-Field Signals Using a Conventional IR Spectrometer with a Ceramic Light Source

机译:使用带有陶瓷光源的常规红外光谱仪在调制技术检测近场信号中的应用

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The goal of the present study is to obtain broadband near-field infrared (IR) spectra by combining Fourier-transform infrared spectroscopy (FTIR) with scattering near-field optical microscopy (s-SNOM). A stage was added to the IR spectrometer with a ceramic light source in order to modulate the probe-sample distance, and the second harmonic component was extracted by a lock-in amplifier. The detected IR signal intensity decreased exponentially with the distance between the probe tip and an Au mirror, with a localization scale of approximately 100 nm. An area with Au islands formed by electron beam lithography was scanned with the modulation system with mapping steps of X = 80 nm and Y = 133 nm. The obtained IR intensity image matches the topographic image, indicating sub-micron spatial resolution. These results indicate that the addition of the modulation system to the broadband near-field IR spectrometer was successful in obtaining localized near-field signals and sub-micron spatial resolution, even using a ceramic IR light source. [DOI: 10.1380/ejssnt.2011.40]
机译:本研究的目标是通过将傅立叶变换红外光谱(FTIR)与散射近场光学显微镜(s-SNOM)相结合来获得宽带近场红外(IR)光谱。为了调节探针-样品的距离,在带有陶瓷光源的红外光谱仪上增加了一个平台,并通过一个锁相放大器提取了二次谐波分量。检测到的IR信号强度随探针尖端和Au镜之间的距离呈指数下降,定位范围约为100 nm。用调制系统以X = 80nm和Y = 133nm的映射步骤扫描通过电子束光刻形成的具有金岛的区域。所获得的IR强度图像与地形图像匹配,表明亚微米空间分辨率。这些结果表明,即使使用陶瓷红外光源,将调制系统添加到宽带近场红外光谱仪中也可以成功获得局部近场信号和亚微米空间分辨率。 [DOI:10.1380 / ejssnt.2011.40]

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