论文标题

纳米布里奇鱿鱼中的亚稳态状态和隐藏相滑

Metastable states and hidden phase slips in nanobridge SQUIDs

论文作者

Nulens, Lukas, Dausy, Heleen, Wyszynski, Michal J., Raes, Bart, Van Bael, Margriet J., Milosevic, Milorad V., Van de Vondel, Joris

论文摘要

我们制造了一个不对称的纳米级鱿鱼,该鱿鱼由一个纳米桥弱连接和一个Dayem Bridge弱连接组成。这些特定弱环节的当前相位关系的特征在于多价性和线性性。虽然后者负责临界电流(所谓的涡度钻石)的特定磁场依赖性,但前者使以一个磁场值处存在不同涡度状态(相绕组数)的可能性。在实验中,观察到的临界电流值本质上是随机的,不一定与最低能量状态相关的电流相吻合,并且严重取决于测量条件。在这项工作中,由于在冷冻过程中发生的相动态和扫描电流时,我们揭示了观察到的亚稳定性的起源。此外,我们采用特殊的测量协议来准备所需的涡度状态,并确定(隐藏的)相位滑动动力学统治这些纳米版本的检测状态。为了洞悉冷凝物的动力学,更具体地说是隐藏的相位滑动,我们进行了时间依赖的金茨堡 - 兰道模拟。

We fabricated an asymmetric nanoscale SQUID consisting of one nanobridge weak link and one Dayem bridge weak link. The current phase relation of these particular weak links is characterized by multivaluedness and linearity. While the latter is responsible for a particular magnetic field dependence of the critical current (so-called vorticity diamonds), the former enables the possibility of different vorticity states (phase winding numbers) existing at one magnetic field value. In experiments the observed critical current value is stochastic in nature, does not necessarily coincide with the current associated with the lowest energy state and critically depends on the measurement conditions. In this work, we unravel the origin of the observed metastability as a result of the phase dynamics happening during the freezing process and while sweeping the current. Moreover, we employ special measurement protocols to prepare the desired vorticity state and identify the (hidden) phase slip dynamics ruling the detected state of these nanodevices. In order to gain insights into the dynamics of the condensate and, more specifically the hidden phase slips, we performed time-dependent Ginzburg-Landau simulations.

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