论文标题

Terahertz对次波长大小样品的测量至隧道极限

Terahertz measurements on subwavelength-size samples down to the tunneling limit

论文作者

Maluski, D., Mayorga, I. Cámara, Hemberger, J., Grüninger, M.

论文摘要

对于Terahertz的单晶光谱,波长$λ$通常与研究样品的大小相当,强调衍射效应。使用连续的波Terahertz光谱仪在传输几何形状中,我们解决了样本量对光学特性可实现精度的影响,特别是集中在相数据上。我们采用$α$ - 乳糖一水合物作为范式示例,并比较使用直径为D范围为10 mm至0.2 mm的光圈测量的数据。对于小d,强衍射通常会使低频下传输振幅的定量分析无效。但是,可以将相位数据评估为较低的频率,并显示出对D的更系统的依赖。对于定量分析,我们采用波导图片来描述具有圆柱形孔的小孔。对于d高达0.2毫米,对应于1/d = 50 cm $^{ - 1} $,圆形波导不支持低于其截止频率$ 1/λ_c=ω_c/2πc\ yous的传播波的传播波。在实验上,我们确认具有厚度$ d_ {ap} = 1 $ mm的圆柱孔的截止值。接近$ω_c$,测得的相速度大于$ c $的数量级,即真空的光速。如果将样品安装在带有圆锥形孔的薄孔上,则将截止物洗净。在这种情况下,如果在分析中考虑了孔的$α$ - 乳糖一水合物的$α$ - 乳糖一水合物的d = 0.2 mm的水合物,则可以定量地描述至约10 cm $^{ - 1} $。

For terahertz spectroscopy on single crystals, the wavelength $λ$ often is comparable to the size of the studied samples, emphasizing diffraction effects. Using a continuous-wave terahertz spectrometer in transmission geometry, we address the effect of the sample size on the achievable accuracy of the optical properties, focusing in particular on the phase data. We employ $α$-lactose monohydrate as a paradigmatic example and compare data that were measured using apertures with diameters D in the range from 10 mm to 0.2 mm. For small D, strong diffraction typically invalidates a quantitative analysis of the transmitted amplitude at low frequencies. The phase data, however, can be evaluated to lower frequency and show a more systematic dependence on D. For a quantitative analysis, we employ a waveguide picture for the description of small apertures with a cylindrical bore. For D as small as 0.2 mm, corresponding to 1/D = 50 cm$^{-1}$, a circular waveguide does not support propagating waves below its cut-off frequency $1/λ_c = ω_c/2πc \approx 29$ cm$^{-1}$. Experimentally, we confirm this cut-off for cylindrical apertures with a thickness $d_{ap} = 1$ mm. Close to $ω_c$, the measured phase velocity is an order of magnitude larger than $c$, the speed of light in vacuum. The cut-off is washed out if a sample is mounted on a thin aperture with a conical bore. In this case, the phase data of $α$-lactose monohydrate for D = 0.2 mm can quantitatively be described down to about 10 cm$^{-1}$ if the waveguide-like properties of the aperture are taken into account in the analysis.

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