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Superconducting Pb stripline resonators in parallel magnetic field and their application for microwave spectroscopy

机译:平行磁场中的超导Pb带状线谐振器及其在微波光谱学中的应用

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Planar superconducting microwave resonators are key elements in a variety of technical applications and also act as sensitive probes for microwave spectroscopy of various materials of interest in present solid state research. Here superconducting Pb is a suitable material as a basis for microwave stripline resonators. To utilize Pb stripline resonators in a variable magnetic field (e.g. in ESR measurements), the electrodynamics of such resonators in a finite magnetic field has to be fully understood. Therefore we performed microwave transmission measurements (with ample applied power to work in linear response) on superconducting Pb stripline resonators in a variable, parallel magnetic field. We determined surface resistance, penetration depth, as well as real and imaginary parts, sigma(1) and sigma(2), of the complex conductivity of superconducting Pb as a function of a magnetic field. Here we find features reminiscent of those in temperature-dependent measurements, such as a maximum in sigma(1) (coherence peak). At magnetic fields above the critical field of this type-I superconductor we still find a low-loss microwave response, which we assign to remaining superconductivity in the form of filaments within the Pb. Hysteresis effects are found in the quality factor of resonances once the swept magnetic field has exceeded the critical magnetic field. This is due to normal conducting areas that are pinned and can therefore persist in the superconducting phase. Besides zero-field-cooling we show an alternative way to eliminate these even at T< T-c. Based on our microwave data, we also determine the critical magnetic field and the critical temperature of Pb in a temperature range between 1.6 K and 6.5 K and magnetic fields up to 140 mT, showing good agreement with BCS predictions. We also study a Sn sample in a Pb resonator to demonstrate the applicability of superconducting Pb stripline resonators in the experimental study of other (super-) conducting materials in a variable magnetic field.
机译:平面超导微波谐振器是各种技术应用中的关键要素,并且在当前的固态研究中,还用作各种感兴趣材料的微波光谱学的灵敏探针。在此,超导Pb是适合作为微波带状线谐振器基础的材料。为了在可变磁场中(例如在ESR测量中)利用Pb带状线谐振器,必须充分理解这种谐振器在有限磁场中的电动力学。因此,我们在可变,平行磁场中对超导Pb带状线谐振器进行了微波传输测量(施加了足够的施加功率以进行线性响应)。我们确定了超导Pb的复电导率随磁场的变化的表面电阻,穿透深度以及实部和虚部sigma(1)和sigma(2)。在这里,我们发现了一些与温度相关的测量让人想起的功能,例如sigma(1)(相干峰)的最大值。在此I型超导体的临界场以上的磁场中,我们仍然会发现低损耗微波响应,我们将其以Pb中细丝的形式分配给剩余的超导性。一旦扫频磁场超过临界磁场,就会在谐振的品质因数中发现磁滞效应。这是由于固定了正常的导电区域,因此可以在超导阶段持续存在。除了零场冷却,我们还展示了另一种消除这些现象的方法,即使在T

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