Wagner Glenn, Nguyen Dung X, Simon Steven H, Halperin Bertrand I
Rudolf Peierls Centre for Theoretical Physics, University of Oxford, Oxford OX1 3PU, United Kingdom.
Kavli Institute for Theoretical Physics, University of California, Santa Barbara, California 93106, USA.
Phys Rev Lett. 2021 Dec 10;127(24):246803. doi: 10.1103/PhysRevLett.127.246803.
We introduce a new variational wave function for a quantum Hall bilayer at total filling ν_{T}=1, which is based on s-wave BCS pairing between electron composite fermions in one layer and hole composite fermions in the other. In addition, we reexamine a trial wave function based on p-wave BCS pairing between electron composite fermions in both layers. We compute the overlap of the optimized trial functions with the ground state from exact diagonalization calculations of up to 14 electrons in a spherical geometry, and we find excellent agreement over the entire range of values of the ratio between the layer separation and the magnetic length. The s-wave trial wave function naturally allows for charge imbalance between the layers and provides important insights into how the physics at large interlayer separations crosses over to that at small separations in a fashion analogous to the BEC-BCS crossover.
我们引入了一种适用于总填充率ν_T = 1的量子霍尔双层的新变分波函数,它基于一层中的电子复合费米子与另一层中的空穴复合费米子之间的s波BCS配对。此外,我们重新审视了基于两层中电子复合费米子之间p波BCS配对的试探波函数。我们通过对球形几何结构中多达14个电子的精确对角化计算,计算了优化后的试探函数与基态的重叠,发现在层间距与磁长度之比的整个取值范围内都有很好的一致性。s波试探波函数自然地允许层间存在电荷不平衡,并为大层间距下的物理如何以类似于玻色-爱因斯坦凝聚-玻色-库珀对超流转变(BEC-BCS crossover)的方式过渡到小层间距下的物理提供了重要见解。