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Origin of photovoltaic effect in superconducting YBa2Cu3O6.96 ceramics

机译:YBa2Cu3O6.96超导陶瓷中光伏效应的起源

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摘要

We report remarkable photovoltaic effect in YBa2Cu3O6.96 (YBCO) ceramic between 50 and 300 K induced by blue-laser illumination, which is directly related to the superconductivity of YBCO and the YBCO-metallic electrode interface. There is a polarity reversal for the open circuit voltage Voc and short circuit current Isc when YBCO undergoes a transition from superconducting to resistive state. We show that there exists an electrical potential across the superconductor-normal metal interface, which provides the separation force for the photo-induced electron-hole pairs. This interface potential directs from YBCO to the metal electrode when YBCO is superconducting and switches to the opposite direction when YBCO becomes nonsuperconducting. The origin of the potential may be readily associated with the proximity effect at metal-superconductor interface when YBCO is superconducting and its value is estimated to be ~10–8 mV at 50 K with a laser intensity of 502 mW/cm2. Combination of a p-type material YBCO at normal state with an n-type material Ag-paste forms a quasi-pn junction which is responsible for the photovoltaic behavior of YBCO ceramics at high temperatures. Our findings may pave the way to new applications of photon-electronic devices and shed further light on the proximity effect at the superconductor-metal interface.
机译:我们报道了蓝激光照射在50至300 K之间的YBa2Cu3O6.96(YBCO)陶瓷中产生了显着的光伏效应,这与YBCO和YBCO-金属电极界面的超导性直接相关。当YBCO经历从超导状态到电阻状态的转变时,开路电压Voc和短路电流Isc会发生极性反转。我们表明,在超导体-正常金属界面上存在一个电位,该电位为光致电子-空穴对提供了分离力。当YBCO超导时,该界面电势从YBCO指向金属电极,而当YBCO非导通时,该界面电势切换到相反的方向。当YBCO超导时,电位的起源很容易与金属-超导体界面处的邻近效应相关,并且在50 valueK且激光强度为502的情况下,其值估计为〜10 –8 mV mW / cm 2 。正常状态下的p型材料YBCO与n型材料Ag-paste的组合形成准pn结,该准pn结负责YBCO陶瓷在高温下的光伏行为。我们的发现可能为光子电子设备的新应用铺平道路,并进一步阐明超导体与金属界面处的邻近效应。

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