Engineering Dirac Materials: Metamorphic InAs1–x Sbx /InAs1–y Sby Superlattices with Ultralow Bandgap S Suchalkin, G Belenky, M Ermolaev, S Moon, Y Jiang, D Graf, D Smirnov, ...
Nano letters 18 (1), 412-417, 2017
27 2017 GaSb-Based Type-I Quantum Well 3–3.5- m Cascade Light Emitting Diodes M Ermolaev, Y Lin, L Shterengas, T Hosoda, G Kipshidze, S Suchalkin, ...
IEEE Photonics Technology Letters 30 (9), 869-872, 2018
20 2018 Giant g -factors and fully spin-polarized states in metamorphic short-period InAsSb/InSb superlattices Y Jiang, M Ermolaev, G Kipshidze, S Moon, M Ozerov, D Smirnov, Z Jiang, ...
Nature Communications 13 (1), 5960, 2022
13 2022 -factor engineering with InAsSb alloys toward zero band gap limitY Jiang, M Ermolaev, S Moon, G Kipshidze, G Belenky, S Svensson, ...
Physical Review B 108 (12), L121201, 2023
8 2023 Metamorphic narrow-gap InSb/InAsSb superlattices with ultra-thin layers M Ermolaev, S Suchalkin, G Belenky, G Kipshidze, B Laikhtman, S Moon, ...
Applied Physics Letters 113 (21), 2018
8 2018 Dirac energy spectrum and inverted bandgap in metamorphic InAsSb/InSb superlattices S Suchalkin, M Ermolaev, T Valla, G Kipshidze, D Smirnov, S Moon, ...
Applied Physics Letters 116 (3), 2020
6 2020 Perspective on advances in InAsSb type II superlattices grown on virtual substrates G Belenky, S Suchalkin, SP Svensson, D Donetsky, M Ermolaev, ...
Applied Physics Letters 117 (25), 2020
4 2020 Energy spectrum and optical absorption of superlattices under strong band inversion conditions B Laikhtman, S Suchalkin, G Belenky, M Ermolaev
Superlattices and Microstructures 128, 438-442, 2019
4 2019 Metamorphic InAsSb structures as a new platform for optoelectronic and quantum information processing devices M Ermolaev
State University of New York at Stony Brook, 2020
2020 Quantum Materials Based on Metamorphic InAsSb S Suchalkin, G Belenky, M Ermolaev, B Laikhtman, G Kipshidze, ...
2019 IEEE Research and Applications of Photonics in Defense Conference …, 2019
2019