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Related papers: Effective g-factor in Majorana Wires

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Subband occupancy (i.e. the number of occupied subbands or energy levels in the semiconductor) is a key physical parameter characterizing the topological properties of superconductor-semiconductor hybrid systems in the context of the search…

Mesoscale and Nanoscale Physics · Physics 2020-01-15 Benjamin D. Woods , Sankar Das Sarma , Tudor D. Stanescu

An external magnetic field is needed to drive a nanowire in proximity to an s-wave superconductor into a topological regime which supports Majorana end states. However, a magnetic field generally suppresses the proximity superconducting gap…

Superconductivity · Physics 2020-01-10 Ying-Ming Xie , Benjamin T. Zhou , T. K. Ng , K. T. Law

Motivated by a recent experimental report[1] claiming the likely observation of the Majorana mode in a semiconductor-superconductor hybrid structure[2,3,4,5], we study theoretically the dependence of the zero bias conductance peak…

Mesoscale and Nanoscale Physics · Physics 2013-01-09 Chien-Hung Lin , Jay D. Sau , S. Das Sarma

The proximity effect in semiconductor-superconductor nanowires is expected to generate an induced gap in the semiconductor. The magnitude of this induced gap, together with the semiconductor properties like the spin-orbit coupling and…

We perform tilt-field transport experiment on inverted InAs/GaSb which hosts quantum spin Hall insulator. By means of coincidence method, Landau level (LL) spectra of electron and hole carriers are systematically studied at different…

Materials Science · Physics 2016-01-06 Xiaoyang Mu , Gerard Sullivan , Rui-Rui Du

The controlled growth of nanowires (NWs) with dimensions comparable to the Fermi wavelengths of the charge carriers allows fundamental investigations of quantum confinement phenomena. Here, we present studies of proximity-induced…

Mesoscale and Nanoscale Physics · Physics 2015-06-25 Jie Xiang , A. Vidan , M. Tinkham , R. M. Westervelt , Charles M. Lieber

The great possibilities for strain engineering in core/shell nanowires have been explored as an alternative route to tailor the properties of binary III-V semiconductors without changing their chemical composition. In particular, we…

We consider theoretically an armchair Carbon nanotube (CNT) in the presence of an electric field and in contact with an s-wave superconductor. We show that the proximity effect opens up superconducting gaps in the CNT of different strengths…

Mesoscale and Nanoscale Physics · Physics 2012-06-01 Jelena Klinovaja , Suhas Gangadharaiah , Daniel Loss

A recent experiment [Nadj-Perge et al., Science 346, 602 (2014)] provides evidence for Majorana zero modes in iron (Fe) chains on the superconducting Pb(110) surface. Here, we study this system by scanning tunneling microscopy using…

Mesoscale and Nanoscale Physics · Physics 2015-11-09 Michael Ruby , Falko Pientka , Yang Peng , Felix von Oppen , Benjamin W. Heinrich , Katharina J. Franke

We study the proximity effect in a one-dimensional nanowire strongly coupled to a finite superconductor with a characteristic size which is much shorter than its coherence length. Such geometries have become increasingly relevant in recent…

Mesoscale and Nanoscale Physics · Physics 2017-09-20 Christopher Reeg , Daniel Loss , Jelena Klinovaja

We investigate diffusive nanowire-based structures with two normal terminals on the sides and a central superconducting island in the middle, which is either grounded or floating. Using a semiclassical calculation we demonstrate that both…

Mesoscale and Nanoscale Physics · Physics 2021-09-15 A. V. Bubis , E. V. Shpagina , A. G. Nasibulin , V. S. Khrapai

Zeeman splitting of 1D hole subbands is investigated in quantum point contacts (QPCs) fabricated on a (311) oriented GaAs-AlGaAs heterostructure. Transport measurements can determine the magnitude of the g-factor, but cannot usually…

Mesoscale and Nanoscale Physics · Physics 2017-02-28 A. Srinivasan , K. L. Hudson , D. S. Miserev , L. A. Yeoh , O. Klochan , K. Muraki , Y. Hirayama , O. P. Sushkov , A. R. Hamilton

We investigate the mesoscopic disorder induced rms conductance variance $\delta G$ in a few layer graphene nanoribbon (FGNR) contacted by two superconducting (S) Ti/Al contacts. By sweeping the back-gate voltage, we observe pronounced…

Mesoscale and Nanoscale Physics · Physics 2015-05-14 J. Trbovic , N. Minder , F. Freitag , C. Schönenberger

We review the existing and present the new results of $\bf kp$ calculations of the electron, hole, and exciton effective $g$-factors in semiconductor nanocrystals of different shape and symmetry. We propose a simple yet accurate method for…

Mesoscale and Nanoscale Physics · Physics 2020-11-24 M. A. Semina , A. A. Golovatenko , A. V. Rodina

Just like insulators can host topological Dirac states at their edges, superconductors can also exhibit topological phases characterized by Majorana edge states. Remarkable zero-energy states have been recently observed at the two ends of…

We introduce a promising new platform for Majorana zero-modes and various spintronics applications based on gate-defined wires in HgTe quantum wells. Due to the Dirac-like band structure for HgTe the physics of such systems differs markedly…

Mesoscale and Nanoscale Physics · Physics 2013-08-30 Johannes Reuther , Jason Alicea , Amir Yacoby

Electrically tunable g-factors in quantum dots are highly desirable for applications in quantum computing and spintronics. We report giant modulation of the hole g-factor in a SiGe nanocrystal when an electric field is applied to the…

Mesoscale and Nanoscale Physics · Physics 2013-03-11 N. Ares , V. N. Golovach , G. Katsaros , M. Stoffel , F. Fournel , L. I. Glazman , O. G. Schmidt , S. De Franceschi

Finite graphene nanoribbon (GNR) heterostructures host intriguing topological in-gap states (Rizzo, D. J. et al.~\textit{Nature} \textbf{2018}, \textit{560}, 204]). These states may be localized either at the bulk edges, or at the ends of…

Mesoscale and Nanoscale Physics · Physics 2019-12-20 Jan-Philip Joost , Antti-Pekka Jauho , Michael Bonitz

Realizing a large Land\'{e} $g$-factor of electrons in solid-state materials has long been thought of as a rewarding task as it can trigger abundant immediate applications in spintronics and quantum computing. Here, by using metamorphic…

Mesoscale and Nanoscale Physics · Physics 2022-10-18 Yuxuan Jiang , Maksim Ermolaev , Gela Kipshidze , Seongphill Moon , Mykhaylo Ozerov , Dmitry Smirnov , Zhigang Jiang , Sergey Suchalkin

We report measurements of the effective $g$ factor of low-density two-dimensional holes in a Ge quantum well. Using the temperature dependence of the Shubnikov-de Haas oscillations, we extract the effective $g$ factor in a magnetic field…

Mesoscale and Nanoscale Physics · Physics 2017-09-15 T. M. Lu , C. T. Harris , S. -H. Huang , Y. Chuang , J. -Y. Li , C. W. Liu