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Ground-state properties of a one-dimensional strongly interacting Bose-Fermi mixture in a double-well potential

机译:一维势阱中一维强相互作用的玻色-费米混合物的基态性质

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摘要

We calculate the reduced single-particle density matrix (RSPDM), momentum distribution, natural orbitals and their occupancies, for a strongly repulsive one-dimensional Bose-Fermi mixture in a double-well potential with a large central barrier. We assume that all particles have the same mass, and fermions are spin polarized. For mesoscopic systems, we find that the ground-state properties qualitatively differ for mixtures with even number of particles (both odd-odd and even-even mixtures) in comparison to mixtures with odd particle numbers (odd-even and even-odd mixtures). For even mixtures the momentum distribution is smooth, whereas the momentum distribution of odd mixtures possesses distinct modulations; the differences are observed also in the off-diagonal correlations of the RSPDM, and in the occupancies of natural orbitals. The calculation is based on a formula which enables efficient calculation of the RSPDM for mesoscopic mixtures in various potentials.
机译:我们计算了在具有大的中心势垒的双阱势中,具有强排斥性的一维Bose-Fermi混合物的简化单颗粒密度矩阵(RSPDM),动量分布,自然轨道及其占有率。我们假设所有粒子具有相同的质量,并且费米子自旋极化。对于介观系统,我们发现与具有奇数粒子数(奇数和奇数混合物)的混合物相比,具有偶数粒子的混合物(奇数和偶数混合物)的基态性质在质量上有所不同。对于偶数混合气,动量分布是平滑的,而奇数混合气的动量分布具有明显的调制。在RSPDM的非对角线相关性以及自然轨道的占用率中也观察到了差异。该计算基于一个公式,该公式可以有效地计算各种电势下的介观混合物的RSPDM。

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