纳米桥接口的电流相位关系的几何缩放
Yue Wang1,2, Lei Chen1,2, Yinping Pan1
1National Key Laboratory of Materials for Integrated Circuits, Shanghai Institute of Microsystem and Information Technology (SIMIT), Chinese Academy of Sciences, Shanghai 200050, People's Republic of China.
ACS nano
|August 13, 2023
概括
纳米桥接点 (NBJ) 能够实现更小的超导电路. 它们的电流相位关系 (CPR) 偏差,用斜率 Δθ 来量化,可以通过几何维度调整,帮助未来的电路设计.
科学领域:
- 固态物理 固态物理
- 超导电性 超导电性 超导电性
- 材料科学 材料科学 材料科学
背景情况:
- 纳米桥接口 (NBJ) 对于超导电路微型化至关重要.
- 现有的模型无法充分解释NBJ中的非正弦电流相位关系 (CPR),只关注有效长度.
研究的目的:
- 调查和定量描述 NBJ 的偏离 CPR.
- 为了建立NBJ几何尺寸和CPR特征之间的相关性.
- 为设计高度集成的超导电路提供见解.
主要方法:
- 用3D银行结构测量和计算的立方体 NBJ 的 CPR.
- 使用斜率 (Δθ) 进行CPR偏差的定量分析.
- 在Δθ,临界电流 (I0) 和几何维度之间的相关性分析.
主要成果:
- 观测到的CPR从阴影形到牙形的形式.
- 证明了斜率 (Δθ) 量化地描述了心肺复苏偏差.
- 发现测量和计算的Δθ依赖于临界电流 (I0) 之间的一致性,与几何维度相关.
- 在3D空间中提供了 Δθ 与 I0 的计算缩放行为.
结论:
- 通过改变NBJ的几何维度,可以有效调整NBJ的CPR.
- 斜度 (Δθ) 是描述和控制NBJ CPR的一个关键参数.
- 这些发现支持使用NBJ用于先进的,高度集成的超导电路设计.
相关概念视频
P-N junction
575
A p-n junction is formed when p-type and n-type semiconductor materials are joined together. At the interface of the p-n junction, holes from the p-side and electrons from the n-side begin to diffuse into the opposite sides due to the concentration gradient. This diffusion of carriers leads to a region around the junction where there are no free charge carriers, known as the depletion region. The charge density within the depletion region for the n-side and p-side can be described by the...
575
Biasing of P-N Junction
600
The operation of a p-n junction diode involves various biasing conditions, including forward bias, reverse bias, and equilibrium.
In equilibrium, no external voltage is applied across the p-n junction. The depletion region is formed at the junction interface due to the diffusion of carriers, which leaves behind charged dopants, acceptors on the p-side, and donors on the n-side. These immobile charges create an electric field that prevents further diffusion of carriers. The related energy band...
In equilibrium, no external voltage is applied across the p-n junction. The depletion region is formed at the junction interface due to the diffusion of carriers, which leaves behind charged dopants, acceptors on the p-side, and donors on the n-side. These immobile charges create an electric field that prevents further diffusion of carriers. The related energy band...
600
Biasing of Metal-Semiconductor Junctions
281
Biasing metal-semiconductor junctions involves applying a voltage across the junction. Specifically, the metal is connected to a voltage source, while the semiconductor is grounded. This technique is essential for controlling the direction and magnitude of current flow in electronic devices, including diodes, transistors, and photovoltaic cells.
In Schottky junctions, where the semiconductor is n-type, applying a positive voltage to the metal relative to the semiconductor reduces its Fermi...
In Schottky junctions, where the semiconductor is n-type, applying a positive voltage to the metal relative to the semiconductor reduces its Fermi...
281


