Topological states in dimerized quantum-dot chains created by atom manipulation
暂无分享,去创建一个
S. Erwin | Yi Pan | F. von Oppen | S. Fölsch | V. Pham | K. Kanisawa
[1] M. Gilbert. Topological electronics , 2021, Communications Physics.
[2] R. Miranda,et al. Tailoring topological order and π-conjugation to engineer quasi-metallic polymers , 2019, Nature Nanotechnology.
[3] A. Khajetoorians,et al. Creating designer quantum states of matter atom-by-atom , 2019, Nature Reviews Physics.
[4] I. Swart,et al. Edge-Dependent Topology in Kekulé Lattices. , 2019, Physical review letters.
[5] S. Kempkes,et al. Robust zero-energy modes in an electronic higher-order topological insulator , 2019, Nature Materials.
[6] Huimin Sun,et al. Topological insulator: Spintronics and quantum computations , 2019, Frontiers of Physics.
[7] P. Boross,et al. Poor man's topological quantum gate based on the Su-Schrieffer-Heeger model , 2019, Physical Review B.
[8] P. Liljeroth,et al. Tuneable topological domain wall states in engineered atomic chains , 2018, npj Quantum Materials.
[9] Colin Daniels,et al. Engineering of robust topological quantum phases in graphene nanoribbons , 2018, Nature.
[10] Daniel J. Rizzo,et al. Topological band engineering of graphene nanoribbons , 2018, Nature.
[11] D. Leykam,et al. Artificial flat band systems: from lattice models to experiments , 2018, 1801.09378.
[12] Yi Pan,et al. Creating and probing quantum dot molecules with the scanning tunneling microscope , 2017 .
[13] F. Liu,et al. Novel Topological Phase with a Zero Berry Curvature. , 2017, Physical review letters.
[14] P. Liljeroth,et al. Topological states in engineered atomic lattices , 2016, Nature Physics.
[15] S. Ornes. Core Concept: Topological insulators promise computing advances, insights into matter itself , 2016, Proceedings of the National Academy of Sciences.
[16] L'aszl'o Oroszl'any,et al. A Short Course on Topological Insulators: Band-structure topology and edge states in one and two dimensions , 2015, 1509.02295.
[17] S. Erwin,et al. Gating a single-molecule transistor with individual atoms , 2015, Nature Physics.
[18] Kiyoshi Kanisawa,et al. Quantum dots with single-atom precision. , 2014, Nature nanotechnology.
[19] Feng Liu,et al. Exotic electronic states in the world of flat bands: From theory to material , 2014, 1404.1131.
[20] J. Martínez-Blanco,et al. Vertical manipulation of native adatoms on the InAs(111)A surface , 2012, Journal of physics. Condensed matter : an Institute of Physics journal.
[21] A. Janotti,et al. Intrinsic and extrinsic causes of electron accumulation layers on InAs surfaces , 2010 .
[22] Jianshu Yang,et al. Atom-by-atom quantum state control in adatom chains on a semiconductor. , 2009, Physical review letters.
[23] T. Fujisawa,et al. Imaging the percolation of localized states in a multisubband two-dimensional electronic system subject to a disorder potential , 2007 .
[24] M. Morgenstern. PROBING THE LOCAL DENSITY OF STATES OF DILUTE ELECTRON SYSTEMS IN DIFFERENT DIMENSIONS , 2003 .
[25] M J Butcher,et al. Imaging of Friedel oscillation patterns of two-dimensionally accumulated electrons at epitaxially grown InAs(111) A surfaces. , 2001, Physical review letters.
[26] G. Döhler,et al. Intersubband transitions of a quasi-two-dimensional electron gas in the strong disorder regime , 1998 .
[27] Karlsson,et al. Charge accumulation at InAs surfaces. , 1996, Physical review letters.
[28] M F Crommie,et al. Confinement of Electrons to Quantum Corrals on a Metal Surface , 1993, Science.
[29] D. Eigler,et al. Atomic and Molecular Manipulation with the Scanning Tunneling Microscope , 1991, Science.
[30] Noguchi,et al. Intrinsic electron accumulation layers on reconstructed clean InAs(100) surfaces. , 1991, Physical review letters.
[31] A. Efros. Metal-non-metal transition in heterostructures with thick spacer layers , 1989 .
[32] Stroscio,et al. Electronic structure of the Si(111)2 x 1 surface by scanning-tunneling microscopy. , 1986, Physical review letters.
[33] S. Tong,et al. Vacancy-buckling model for the (2×2) GaAs (111) surface , 1984 .
[34] A. Heeger,et al. Soliton excitations in polyacetylene , 1980 .
[35] Barry Simon,et al. The bound state of weakly coupled Schrödinger operators in one and two dimensions , 1976 .
[36] F. Stern,et al. Properties of Semiconductor Surface Inversion Layers in the Electric Quantum Limit , 1967 .
[37] S. Roth,et al. Solitons in polyacetylene , 1987 .