首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Flat coil-based tunnel diode oscillator enabling to detect the real shape of the superconductive transition curve and capable of imaging the properties of HTSC films with high spatial resolution
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Flat coil-based tunnel diode oscillator enabling to detect the real shape of the superconductive transition curve and capable of imaging the properties of HTSC films with high spatial resolution

机译:基于扁平线圈的隧道二极管振荡器,能够检测超导过渡曲线的真实形状,并能够以高空间分辨率对HTSC薄膜的特性进行成像

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Owing to a pick-up coil's flat design, relatively low MHz-range operation frequency, and six orders relative resolution a flat coil-based tunnel diode oscillator has advantages, compared to all other methods. They become crucial in studies with thin high-T_c superconductivity (HTSC) materials (with small signals), especially at the start of the Cooper pairs' formation. Due to this the superconductivity precursor 'paramagnetic' effect was detected recently in YBaCuO films at N/S transition. It precedes Meissner ejection and specifies details of the shape of the transition curve. We discuss the influence of the currents on this effect, and the relationship between the quality of the material and the shape of the effect. A new imaging device has also been created based on this test method (using a focused He-Ne laser beam as a probing signal), capable of imaging the properties of HTSC films with ~ 3 μm spatial resolution. The method is based on detection of the inductance and Q-factor value changes of a single-layer flat coil, placed at the face of the sample. This leads to frequency and/or amplitude changes of the stable oscillator. The test device enabled 2D-mapping of the grain structure of a bridge-shaped YBaCuO film. Basically, the method is capable of imaging 2D-current distribution in thin HTS with sub-μm spatial-resolution, using non-bolometric response. However, the achieved resolution ~ 3 μm of a bolometric nature (in a given device with 3.5mm-size coil) by no means is limited by the abilities of the method, but mainly, it depends on how narrowly it is possible to focus the probing beam, while the own resolution of a present flat coil-based technique is better than 0.1 μm, and can be improved essentially by reducing the coil size.
机译:与其他所有方法相比,基于拾波线圈的扁平设计,相对较低的MHz范围工作频率和六阶相对分辨率,基于扁平线圈的隧道二极管振荡器具有优势。在使用薄的高T_c超导(HTSC)材料(具有小信号)的研究中,它们变得至关重要,尤其是在Cooper对形成初期。由于这个原因,最近在N / S转变的YBaCuO薄膜中检测到超导前体的“顺磁”效应。它先于Meissner弹出,并指定过渡曲线形状的详细信息。我们讨论了电流对该效果的影响,以及材料质量和效果形状之间的关系。基于这种测试方法,还创建了一种新的成像设备(使用聚焦​​的He-Ne激光束作为探测信号),能够以约3μm的空间分辨率对HTSC薄膜的特性进行成像。该方法基于检测放置在样品表面的单层扁平线圈的电感和Q因子值变化。这导致稳定振荡器的频率和/或幅度变化。该测试装置能够对桥状YBaCuO膜的晶粒结构进行2D映射。基本上,该方法能够使用非辐射热响应,以亚微米空间分辨率对薄HTS中的2D电流分布进行成像。但是,所获得的辐射热性质的分辨率〜3μm(在具有3.5mm尺寸线圈的给定设备中)绝不受该方法的能力的限制,但主要取决于其聚焦范围的狭窄程度。探测光束,而目前的基于扁平线圈的技术的自身分辨率优于0.1μm,并且可以通过减小线圈尺寸来实质上提高探测分辨率。

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