Literature DB >> 29266950

Engineering Dirac Materials: Metamorphic InAs1-xSbx/InAs1-ySby Superlattices with Ultralow Bandgap.

Sergey Suchalkin1, Gregory Belenky1, Maksim Ermolaev1, Seongphill Moon2,3, Yuxuan Jiang2,4, David Graf2, Dmitry Smirnov2, Boris Laikhtman5, Leon Shterengas1, Gela Kipshidze1, Stefan P Svensson6, Wendy L Sarney6.   

Abstract

Quasiparticles with Dirac-type dispersion can be observed in nearly gapless bulk semiconductors alloys in which the bandgap is controlled through the material composition. We demonstrate that the Dirac dispersion can be realized in short-period InAs1-xSbx/InAs1-ySby metamorphic superlattices with the bandgap tuned to zero by adjusting the superlattice period and layer strain. The new material has anisotropic carrier dispersion: the carrier energy associated with the in-plane motion is proportional to the wave vector and characterized by the Fermi velocity vF, and the dispersion corresponding to the motion in the growth direction is quadratic. Experimental estimate of the Fermi velocity gives vF = 6.7 × 105 m/s. Remarkably, the Fermi velocity in this system can be controlled by varying the overlap between electron and hole states in the superlattice. Extreme design flexibility makes the short-period metamorphic InAs1-xSbx/InAs1-ySby superlattice a new prospective platform for studying the effects of charge-carrier chirality and topologically nontrivial states in structures with the inverted bandgaps.

Keywords:  Dirac materials; cyclotron resonance; metamorphic materials; superlattices

Year:  2017        PMID: 29266950     DOI: 10.1021/acs.nanolett.7b04304

Source DB:  PubMed          Journal:  Nano Lett        ISSN: 1530-6984            Impact factor:   11.189


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Authors:  Sergey S Krishtopenko
Journal:  Sci Rep       Date:  2021-10-26       Impact factor: 4.379

2.  Giant g-factors and fully spin-polarized states in metamorphic short-period InAsSb/InSb superlattices.

Authors:  Yuxuan Jiang; Maksim Ermolaev; Gela Kipshidze; Seongphill Moon; Mykhaylo Ozerov; Dmitry Smirnov; Zhigang Jiang; Sergey Suchalkin
Journal:  Nat Commun       Date:  2022-10-10       Impact factor: 17.694

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  3 in total

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