4.8 Article

Spin Andreev-like Reflection in Metal-Mott Insulator Heterostructures

期刊

PHYSICAL REVIEW LETTERS
卷 114, 期 6, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.114.066401

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  1. Center for Nanophase Materials Sciences - U.S. Department of Energy
  2. DOE early career research program
  3. U.S. Department of Energy, Office of Basic Energy Sciences, Materials Science and Engineering Division
  4. Simons Foundation (Many Electron Collaboration)
  5. Government of Canada through Industry Canada
  6. Province of Ontario through the Ministry of Research and Innovation

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Using the time-dependent density-matrix renormalization group (tDMRG), we study the time evolution of electron wave packets in one-dimensional (1D) metal-superconductor heterostructures. The results show Andreev reflection at the interface, as expected. By combining these results with the well-known singlespin- species electron-hole transformation in the Hubbard model, we predict an analogous spin Andreev reflection in metal-Mott insulator heterostructures. This effect is numerically confirmed using 1D tDMRG, but it is expected to also be present in higher dimensions, as well as in more general Hamiltonians. We present an intuitive picture of the spin reflection, analogous to that of Andreev reflection at metalsuperconductor interfaces. This allows us to discuss a novel antiferromagnetic proximity effect. Possible experimental realizations are discussed.

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