论文标题

相互作用的氧化二维电子系统的微波响应

Microwave response of interacting oxide two-dimensional electron systems

论文作者

Tabrea, D., Dmitriev, I. A., Dorozhkin, S. I., Gorshunov, B. P., Boris, A. V., Kozuka, Y., Tsukazaki, A., Kawasaki, M., von Klitzing, K., Falson, J.

论文摘要

我们提出了一项关于微波照明高迁移率mgzno/ZnO的实验研究,其基于不同的电子密度,因此,库仑相互作用强度有所不同。在广泛的照明频率上,在低密度和高密度样品中检查了垂直磁场中低温直流电阻的光响应。在低密度样品中,由于回旋共振(CR)吸收引起的响应占主导地位,而高密度样品表现出明显的微波诱导的电阻振荡(MIRO)。微波传递实验是一种互补的方法,可在整个电子密度范围内检测CR,并参考带有相互作用的条件质量。电阻中的CR和Miro相关特征都可以提取有效的电子质量,但产生了两个不同的值。代表质量中心动力学的常规回旋体质量与密度没有变化,并且与块状ZnO的带电子质量一致,而Miro质量则揭示了系统的增加,而降低电子密度与相互作用的Fermi液体中预期的重新分配一致。

We present an experimental study on microwave illuminated high mobility MgZnO/ZnO based two-dimensional electron systems with different electron densities and, hence, varying Coulomb interaction strength. The photoresponse of the low-temperature dc resistance in perpendicular magnetic field is examined in low and high density samples over a broad range of illumination frequencies. In low density samples a response due to cyclotron resonance (CR) absorption dominates, while high density samples exhibit pronounced microwave-induced resistance oscillations (MIRO). Microwave transmission experiments serve as a complementary means of detecting the CR over the entire range of electron densities and as a reference for the band mass unrenormalized by interactions. Both CR and MIRO-associated features in the resistance permit extraction of the effective mass of electrons but yield two distinct values. The conventional cyclotron mass representing center-of-mass dynamics exhibits no change with density and coincides with the band electron mass of bulk ZnO, while MIRO mass reveals a systematic increase with lowering electron density consistent with renormalization expected in interacting Fermi liquids.

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