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The metal-induced gap states (MIGS) are commonly believed to cause the strong Femi level pinning (FLP) in the metal-semiconductors contacts. Here, we unravel unambiguously that the dangling bonds-induced interface states play a crucial…

Materials Science · Physics 2025-05-08 Ziying Xiang , Jun-Wei Luo , Shu-Shen Li

Thicknesses-dependent performance of metal-two-dimensional (2D) semiconductor junctions (MSJ) in electronics/optoelectronics have attracted increasing attention, but till present, people have little knowledge about the micro-mechanism of…

Materials Science · Physics 2019-11-01 Qian Wang , Yangfan Shao , Penglai Gong , Xingqiang Shi

The physical origin of Fermi level pinning (FLP) at metal/Ge interfaces has been argued over a long period. Using the Fe$_{3}$Si/Ge(111) heterostructure developed originally, we can explore electrical transport properties through atomically…

Mesoscale and Nanoscale Physics · Physics 2012-01-31 K. Kasahara , S. Yamada , K. Sawano , M. Miyao , K. Hamaya

The problem of Fermi-level pinning at semiconductor-metal contacts is readdressed starting from first-principles calculations for Al/GaAs. We give quantitative evidence that the Schottky barrier height is very little affected by any…

Materials Science · Physics 2009-10-30 Alice Ruini , Raffaele Resta , Stefano Baroni

In 2D-semiconductor-based field-effect transistors and optoelectronic devices, metal-semiconductor junctions are one of the crucial factors determining device performance. The Fermi-level (FL) pinning effect, which commonly caused by…

Strong Fermi level pinning (FLP) - often attributed to metal-induced gap states at the interfacial contacts - severely reduces the tunability of the Schottky barrier height of the junction and limits applications of the 2D materials in…

Applied Physics · Physics 2022-08-16 Cunzhi Sun , Cheng Xiang , Rongdun Hong , Feng Zhang , Timothy J. Booth , Peter Bøggild , Manh-Ha Doan

We identify a universality in the Fermi level change of Van der Waals interacting semiconductor interfaces-based Schottky junctions. We show that the disappearing of quasi-Fermi level pinning at a certain thickness of semiconductor films…

Materials Science · Physics 2022-02-22 Jinpeng Yang , Nobuo Ueno

Two-dimensional (2D) tin monoxide (SnO) has attracted much attention owing to its distinctive electronic and optical properties, which render itself suitable as a channel material in field effect transistors (FETs). However, upon contact…

Materials Science · Physics 2023-08-31 Yujia Tian , Devesh R. Kripalani , Ming Xue , Kun Zhou

First-principles calculations of polar semiconductor nanorods reveal that their dipole moments are strongly influenced by Fermi level pinning. The Fermi level for an isolated nanorod is found to coincide with a significant density of…

Mesoscale and Nanoscale Physics · Physics 2012-06-08 Philip W. Avraam , Nicholas D. M. Hine , Paul Tangney , Peter D. Haynes

Two-dimensional (2D) semiconductors have shown great promise in (opto)electronic applications. However, their developments are limited by a large Schottky barrier (SB) at the metal-semiconductor junction (MSJ), which is difficult to tune by…

Mesoscale and Nanoscale Physics · Physics 2016-04-26 Yuanyue Liu , Paul Stradins , Su-Huai Wei

We investigate the mutual proximity effect in a normal metal contacted to a superconductor through a magnetic interface. Analytical and self-consistent numerical results are presented, and we consider both the diffusive and ballistic…

Superconductivity · Physics 2015-05-18 Jacob Linder , Asle Sudbø , Takehito Yokoyama , Roland Grein , Matthias Eschrig

Hybrid superconductor-semiconductor heterostructures are a promising platform for quantum devices based on mesoscopic and topological superconductivity. In these structures, a semiconductor must be in close proximity to a superconductor and…

Mesoscale and Nanoscale Physics · Physics 2022-09-02 William M. Strickland , Mehdi Hatefipour , Dylan Langone , S. M. Farzaneh , Javad Shabani

It is demonstrated that the electric dipole layer due to the overlapping of electron wavefunctions at metal/graphene contact results in negative Fermi-level pinning effect on the region of GaAs surface with low interface-trap density in…

Mesoscale and Nanoscale Physics · Physics 2022-08-18 Hoon Hahn Yoon , Wonho Song , Sungchul Jung , Junhyung Kim , Kyuhyung Mo , Gahyun Choi , Hu Young Jeong , Jong Hoon Lee , Kibog Park

Schottky contacts (SC) at the ferromagnet/ZnO interface are good candidates for the realization and control of several semiconductor emerging magnetic phenomena such spin injection and spin-controlled photonics. In this work, we demonstrate…

Materials Science · Physics 2024-01-17 Mohamed Belmoubarik

We explore Weyl and Dirac semimetals with tilted nodes as platforms for realizing an intrinsic superconducting diode effect. Although tilting breaks sufficient spatial and time-reversal symmetries, we prove that -- at least for conventional…

Superconductivity · Physics 2024-02-28 Kai Chen , Bishnu Karki , Pavan Hosur

We report the synthesis and characterization of molecular rectifying diodes on silicon using sequential grafting of self-assembled monolayers of alkyl chains bearing a pi group at their outer end (Si/sigma-pi/metal junctions). We…

Materials Science · Physics 2010-05-14 S. Lenfant , D. Guerin , F. Tran Van , C. Chevrot , S. Palacin , J. P. Bourgoin , O. Bouloussa , F. Rondelez , D. Vuillaume

At semiconductor-metal junctions, the Schottky barrier height is generally fixed by "Fermi-level pinning". We find that when a semiconducting carbon nanotube is end-contacted to a metal (the optinal geometry for nanodevices), the behavior…

Condensed Matter · Physics 2009-10-31 Francois Leonard , J. Tersoff

A combination of micro-Raman spectroscopy and micro-XPS (X-ray photo-electron spectroscopy) mapping on statically deflected p-type silicon cantilevers is used to study the mechanical stress dependence of the Fermi level pinning at an…

Mesoscale and Nanoscale Physics · Physics 2019-02-05 H. Li , L. Martinelli , F. Cadiz , A. Bendounan , S. Arscott , F. Sirotti , A. C. H. Rowe

The alignment of the Fermi level of a metal electrode within the gap of the highest occupied and lowest unoccupied orbital of a molecule is a key quantity in molecular electronics. Depending on the type of molecule and the interface…

Materials Science · Physics 2015-06-25 Robert Stadler

We study electron-electron Coulomb interactions in electronic systems whose Fermi surfaces possess a finite electric dipole density. Although there is no net dipole moment, we show that electric monopole-dipole interactions can become…

Superconductivity · Physics 2024-09-23 Grgur Palle , Jörg Schmalian
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