首页> 外文期刊>Journal of Superconductivity and Novel Magnetism >The Influence of Device Geometry on Many-Body Effects in Quantum Point Contacts: Signatures of the 0.7 Anomaly, Exchange and Kondo
【24h】

The Influence of Device Geometry on Many-Body Effects in Quantum Point Contacts: Signatures of the 0.7 Anomaly, Exchange and Kondo

机译:器件几何形状对量子点接触中的多体效应的影响:0.7异常,交换和近藤的特征

获取原文
获取原文并翻译 | 示例
       

摘要

The conductance of a quantum point contact (QPC) shows several features that result from many-body electron interactions. The spin degeneracy in zero magnetic field appears to be spontaneously lifted due to the so-called 0.7 anomaly. Further, the g-factor for electrons in the QPC is enhanced, and a zero-bias peak in the conductance points to similarities with transport through a Kondo impurity. We report here how these many-body effects depend on QPC geometry. We find a clear relation between the enhanced g-factor and the subband spacing in our QPCs, and can relate this to the device geometry with electrostatic modeling of the QPC potential. We also measured the zero-field energy splitting related to the 0.7 anomaly, and studied how it evolves into a splitting that is the sum of the Zeeman effect, and a field-independent exchange contribution when applying a magnetic field. While this exchange contribution shows sample-to-sample fluctuations and no clear dependence on QPC geometry, it is for all QPCs correlated with the zero-field splitting of the 0.7 anomaly. This provides evidence that the splitting of the 0.7 anomaly is dominated by this field-independent exchange splitting. Signatures of the Kondo effect also show no regular dependence on QPC geometry, but are possibly correlated with splitting of the 0.7 anomaly.
机译:量子点接触(QPC)的电导显示出多体电子相互作用产生的几个特征。归因于所谓的0.7异常,零磁场中的自旋简并性似乎被自发提升。此外,提高了QPC中电子的g因子,电导中的零偏峰指示了与通过近藤杂质的传输的相似性。我们在这里报告这些多体效应如何取决于QPC几何形状。我们在QPC中发现了增强的g因子与子带间距之间的明确关系,并且可以将其与通过QPC电位的静电建模的器件几何形状相关联。我们还测量了与0.7异常相关的零场能量分裂,并研究了它如何演化为塞曼效应之和以及施加磁场时场无关的交换贡献之和的分裂。尽管这种交换贡献显示出样本间的波动,并且对QPC的几何形状没有明确的依赖性,但是对于所有QPC而言,它与0.7异常的零场分裂相关。这提供了证据,证明0.7异常的分裂是由这种与场无关的交换分裂所支配的。 Kondo效应的签名也没有显示出对QPC几何形状的规则依赖性,但可能与0.7异常的分裂相关。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号