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QUANTUM FLUCTUATIONS IN THE EQUILIBRIUM STATE OF A THIN SUPERCONDUCTING LOOP

机译:薄超导环的平衡态中的量子涨落

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We study the oscillatory flux dependence of the supercurrent in a thin superconducting loop, closed by a Josephson junction. Quantum fluctuations of the order parameter in the loop affect the shape and renormalize the amplitude of the supercurrent oscillations. In a short loop, the amplitude of the sinusoidal flux dependence is suppressed. In a large loop, the supercurrent shows a sawtooth dependence on flux in the classical limit. Quantum fluctuations not only suppress the amplitude of the oscillations, but also smear the cusps of the sawtooth dependence. The oscillations approach a sinusoidal form with increasing fluctuation strength. At any finite length of the loop, the renormalized current amplitude is finite. This amplitude shows a power-law dependence on the junction conductance, with an exponent depending on the low-frequency impedance of the loop. [References: 39]
机译:我们研究了由约瑟夫森结封闭的超导细环路中超电流的振荡通量依赖性。回路中阶跃参数的量子波动会影响形状,并使超电流振荡的幅度重新归一化。在短循环中,正弦波通量依赖性的幅度被抑制。在大回路中,在经典极限中,超电流显示出对通量的锯齿状依赖性。量子涨落不仅抑制了振荡的幅度,而且还模糊了锯齿波的依赖性。随着波动强度的增加,振荡接近正弦形式。在环路的任何有限长度处,重新归一化的电流幅度都是有限的。该幅度显示出幂律对结电导的依赖性,而指数则取决于环路的低频阻抗。 [参考:39]

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