Abstract
We provide a pedagogical review on the calculation of highly excited eigenstates of disordered interacting quantum systems which can undergo a many-body localization (MBL) transition, using shift-invert exact diagonalization. We also provide an example code at https://bitbucket.org/dluitz/sinvert_mbl. Through a detailed analysis of the simulational parameters of the random field Heisenberg spin chain, we provide a practical guide on how to perform efficient computations. We present data for mid-spectrum eigenstates of spin chains of sizes up to L = 26. This work is also geared towards readers with interest in efficiency of parallel sparse linear algebra techniques that will find a challenging application in the MBL problem.
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CITATION STYLE
Pietracaprina, F., Macé, N., Luitz, D. J., & Alet, F. (2018). Shift-invert diagonalization of large many-body localizing spin chains. SciPost Physics, 5(5). https://doi.org/10.21468/SciPostPhys.5.5.045
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