Brauer Jens, Zhan Jinxin, Chimeh Abbas, Korte Anke, Lienau Christoph, Gross Petra
Opt Express. 2017 Jun 26;25(13):15504-15525. doi: 10.1364/OE.25.015504.
We present and investigate a novel approach towards broad-bandwidth near-field scanning optical spectroscopy based on an in-line interferometer for homodyne mixing of the near field and a reference field. In scattering-type scanning near-field optical spectroscopy, the near-field signal is usually obscured by a large amount of unwanted background scattering from the probe shaft and the sample. Here we increase the light reflected from the sample by a semi-transparent gold layer and use it as a broad-bandwidth, phase-stable reference field to amplify the near-field signal in the visible and near-infrared spectral range. We experimentally demonstrate that this efficiently suppresses the unwanted background signal in monochromatic near-field measurements. For rapid acquisition of complete broad-bandwidth spectra we employ a monochromator and a fast line camera. Using this fast acquisition of spectra and the in-line interferometer we demonstrate the measurement of pure near-field spectra. The experimental observations are quantitatively explained by analytical expressions for the measured optical signals, based on Fourier decomposition of background and near field. The theoretical model and in-line interferometer together form an important step towards broad-bandwidth near-field scanning optical spectroscopy.
我们提出并研究了一种基于在线干涉仪的新型宽带近场扫描光学光谱方法,用于近场与参考场的零差混频。在散射型扫描近场光学光谱中,近场信号通常被来自探针杆和样品的大量不需要的背景散射所掩盖。在这里,我们通过半透明金层增加从样品反射的光,并将其用作宽带、相位稳定的参考场,以在可见光和近红外光谱范围内放大近场信号。我们通过实验证明,这有效地抑制了单色近场测量中不需要的背景信号。为了快速获取完整的宽带光谱,我们采用了单色仪和快速线阵相机。利用这种快速光谱采集和在线干涉仪,我们展示了纯近场光谱的测量。基于背景和近场的傅里叶分解,通过测量光信号的解析表达式对实验观测进行了定量解释。理论模型和在线干涉仪共同构成了迈向宽带近场扫描光学光谱的重要一步。