论文标题
复合费米斯质量
Composite Fermion Mass
论文作者
论文摘要
复合费物(CFS),外来的准准颗粒,是通过将电子配对和相互作用电子系统中高磁场的偶数磁通量形成的,并且可以解释现象,例如分数量子厅(FQHS)和其他许多体相结合。 CFS具有有效的质量($ M_ {CF} $),其大小与FQHS最基本的属性成反比,即其能量差距。我们在这里提出了$ m_ {cf} $的实验测量,以限制厚度不同的GAAS量子井的超高质量二维电子系统。测量$ M_ {CF} $而不是间隙测量值的优点是,质量值对疾病不敏感,因此是与理论计算进行比较的理想之选,尤其是对于高阶FQH。我们的数据表明,$ m_ {cf} $随着良好的宽度增加而增加,反映出随着电子层变得更厚并且平面库仑能量变软,能量间隙的下降。将我们的测量质量与可用的理论结果进行比较,我们发现了明显的定量差异,强调需要更严格,更准确的计算来解释实验数据。
Composite fermions (CFs), exotic quasi-particles formed by pairing an electron and an even number of magnetic flux quanta emerge at high magnetic fields in an interacting electron system, and can explain phenomena such as the fractional quantum Hall state (FQHS) and other many-body phases. CFs possess an effective mass ($m_{CF}$) whose magnitude is inversely related to the most fundamental property of a FQHS, namely its energy gap. We present here experimental measurements of $m_{CF}$ in ultra-high quality two-dimensional electron systems confined to GaAs quantum wells of varying thickness. An advantage of measuring $m_{CF}$ over gap measurements is that mass values are insensitive to disorder and are therefore ideal for comparison with theoretical calculations, especially for high-order FQHS. Our data reveal that $m_{CF}$ increases with increasing well width, reflecting a decrease in the energy gap as the electron layer becomes thicker and the in-plane Coulomb energy softens. Comparing our measured masses with available theoretical results, we find significant quantitative discrepancies, highlighting that more rigorous and accurate calculations are needed to explain the experimental data.