偏压
二极管
电流(流体)
材料科学
光电子学
超导电性
电压
凝聚态物理
物理
量子力学
热力学
摘要
We report a universal strategy to engineer the superconducting diode effect in normal superconductors through current biasing, achieving full-range rectification efficiency (−1≤η≤1) without magnetic fields. By controllably shifting the critical current asymmetry via a tunable bias, we demonstrate in situ polarity reversal and robust operation across the host material's intrinsic Tc. Second-harmonic voltage analysis reveals unprecedented sensitivity to symmetry-breaking perturbations, with phase signatures and peak width scaling directly mapping to device efficiency. Experimental validation on normal superconductors confirms the method's universality, while contrasting H=0-symmetric responses against magnetochiral systems highlight its unique field-decoupling mechanism. This platform advances nonreciprocal transport studies and provides a scalable pathway for superconducting circuit innovation.
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