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首页> 外文期刊>Physical review.B.Condensed matter and materials physics >Understanding the onset of negative electronic compressibility in single-band and two-band two-dimensional electron gases: Application to LaAlO_3/SrTiO_3
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Understanding the onset of negative electronic compressibility in single-band and two-band two-dimensional electron gases: Application to LaAlO_3/SrTiO_3

机译:了解单带和双频二维电子气体中负电子压缩性的发作:在Laalo_3 / SRTIO_3应用

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摘要

We investigate the effects of two electronic bands at the negative electronic compressibility (NEC) in a two-dimensional electron gas (2DEG). We use a simple homogeneous model with Coulombic interactions and first-order multiband coupling to examine the role of effective mass and relative permittivity in relation to the critical carrier density, where compressibility turns negative. We demonstrate that the population of a second band, along with the presence of interband coupling, can dramatically change the crossover carrier density. Given the difficulty in determining and confirming multiband electronic systems, this model provides a potential method for identifying multiband electronic systems using precise bulk electronic properties measurements. To help illustrate this method, we apply our results to the observed NEC in the 2DEG at the LaAlO_3/SrTiO_3 (LAO/STO) interface and determine that, for the known parameters of LAO/STO, the system is likely a realization of a two-band 2DEG. Furthermore, we provide general limits on the interband coupling with respect to the electronic band population.
机译:我们研究了两维电子气体(2deg)中的两个电子带对负电子压缩性(NEC)的影响。我们使用具有库仑相互作用的简单均匀模型和一流的多频带耦合,以检查有效质量和相对介电常数与临界载体密度相对的作用,其中压缩性变为负。我们证明了第二频带的群体以及存在间歇耦合的存在,可以显着改变交叉载体密度。鉴于确定和确认多频带电子系统的难度,该模型提供了一种使用精确散装电子特性测量来识别多频带电子系统的潜在方法。为了帮助说明这种方法,我们将结果应用于Laalo_3 / SRTIO_3(LAO / STO)接口的2个号码中观察到的NEC,并确定为老挝/ STO的已知参数,系统可能会实现两个 - 带2deg。此外,我们提供关于电子频带群体的间带耦合的一般限制。

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  • 来源
    《Physical review.B.Condensed matter and materials physics》 |2021年第12期|125141.1-125141.12|共12页
  • 作者单位

    Department of Physics University of North Florida Jacksonville Florida 32224 USA Department of Physics University of Connecticut Storrs Connecticut 06269 USA;

    Department of Physics University of Connecticut Storrs Connecticut 06269 USA NORDITA Roslagstullsbacken 23 106 91 Stockholm Sweden;

    Department of Physics University of North Florida Jacksonville Florida 32224 USA;

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