Monaco Roberto
CNR-ISASI, Institute of Applied Sciences and Intelligent Systems 'E. Caianello', Comprensorio Olivetti, 80078 Pozzuoli, Italy.
J Phys Condens Matter. 2016 Nov 9;28(44):445702. doi: 10.1088/0953-8984/28/44/445702. Epub 2016 Sep 8.
Long Josephson tunnel junctions are non-linear transmission lines that allow propagation of current vortices (fluxons) and electromagnetic waves and are used in various applications within superconductive electronics. Recently, the Josephson vortex has been proposed as a new superconducting qubit. We describe a simple method to create a double-well potential for an individual fluxon trapped in a long elliptic annular Josephson tunnel junction characterized by an intrinsic non-uniform width. The distance between the potential wells and the height of the inter-well potential barrier are controlled by the strength of an in-plane magnetic field. The manipulation of the vortex states can be achieved by applying a proper current ramp across the junction. The read-out of the state is accomplished by measuring the vortex depinning current in a small magnetic field. An accurate one-dimensional sine-Gordon model for this strongly non-linear system is presented, from which we calculate the position-dependent fluxon rest-mass, its Hamiltonian density and the corresponding trajectories in the phase space. We examine the dependence of the potential properties on the annulus eccentricity and its electrical parameters and address the requirements for observing quantum-mechanical effects, as discrete energy levels and tunneling, in this two-state system.
长约瑟夫森隧道结是非线性传输线,允许电流涡旋(磁通子)和电磁波传播,并用于超导电子学的各种应用中。最近,约瑟夫森涡旋被提议作为一种新的超导量子比特。我们描述了一种简单的方法,用于为被困在具有固有宽度不均匀特性的长椭圆形环形约瑟夫森隧道结中的单个磁通子创建双阱势。势阱之间的距离和阱间势垒的高度由平面内磁场的强度控制。涡旋态的操纵可以通过在结上施加适当的电流斜坡来实现。状态的读取是通过在小磁场中测量涡旋脱钉电流来完成的。给出了针对这个强非线性系统的精确一维正弦 - 戈登模型,从中我们计算了位置依赖的磁通子静止质量、其哈密顿密度以及相空间中的相应轨迹。我们研究了势特性对环的偏心率及其电学参数的依赖性,并探讨了在这个两态系统中观察量子力学效应(如离散能级和隧穿)的要求。