首页> 外文期刊>Physical Review, B. Condensed Matter >Spin polarization of two-dimensional electrons in GaAs quantum wells around Landau level filling nu=1 from NMR measurements of gallium nuclei - art. no. 085327
【24h】

Spin polarization of two-dimensional electrons in GaAs quantum wells around Landau level filling nu=1 from NMR measurements of gallium nuclei - art. no. 085327

机译:根据镓核的NMR测量,在Landau能级附近填充nu = 1的GaAs量子阱中的二维电子的自旋极化。没有。 085327

获取原文
获取原文并翻译 | 示例
           

摘要

A nuclear magnetic resonance (NMR) study has been carried out con a GaAs/Al0.3Ga0.7As multiple-quantum-well sample, containing two-dimensional (2D) electron layers, in the quantum Hall regime. The spin polarization To of 2D electrons is determined from the hyperfine shift of Ga-69,Ga-71 nuclei, measured by standard pulsed NMR. We have used the tilted-magnetic field technique to investigate the effect of an increasing Zeeman energy on To around Landau level filling factor nu =1. Mostly on the basis of measurements performed at B = 17 T and T = 1.5 K, we conjecture that in the high-B and low-T limit, P(nu) follows the predictions of the noninteracting-electron model. The low-temperature P(nu =1) is found to be far below the expected full polarization, and the observed nuclear spin-lattice relaxation rate is not reduced, in contrast to the observations by optically pumped NMR. The two techniques obtain different results only close to nu =1, and the reason why remains unclear; simple explanation in terms of the nonuniform electron density does not seem satisfactory. [References: 53]
机译:已经在GaAs / Al0.3Ga0.7As多量子阱样品中进行了核磁共振(NMR)研究,该样品包含二维霍尔(2D)电子层。二维电子的自旋极化To是由Ga-69,Ga-71原子核的超精细位移确定的,该位移通过标准脉冲NMR测量。我们已经使用倾斜磁场技术来研究增加的塞曼能量对Landau水平填充因子nu = 1附近的To的影响。我们主要基于在B = 17 T和T = 1.5 K时进行的测量,我们推测在高B和低T极限下,P(nu)遵循非相互作用电子模型的预测。与通过光学泵浦NMR观察到的结果相反,发现低温P(nu = 1)远低于预期的全极化,并且观察到的核自旋晶格弛豫速率没有降低。两种技术仅在接近nu = 1时获得不同的结果,其原因仍不清楚。关于不均匀电子密度的简单解释似乎并不令人满意。 [参考:53]

著录项

相似文献

  • 外文文献
  • 中文文献
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