نتایج جستجو برای: semimetal

تعداد نتایج: 2000  

2009
Goki Eda Cecilia Mattevi Hisato Yamaguchi HoKwon Kim Manish Chhowalla

Transport properties of progressively reduced graphene oxide (GO) are described. Evolution of the electronic properties reveals that as-synthesized GO undergoes insulator-semiconductor-semimetal transitions with reduction. The apparent transport gap ranges from 10 to 50 meV and approaches zero with extensive reduction. Measurements at varying degrees of reduction reveal that transport in reduce...

2009
Gavin Armstrong

Another possible modification, which has been predicted theoretically, is the addition of hydrogen atoms to graphene — creating 'graphane' — altering the sp2 carbon atoms to sp3 and thus changing the structure and electronic properties. Now Andre Geim from the University of Manchester and co-workers from Russia and the Netherlands have hydrogenated mechanically exfoliated graphene by exposing i...

Journal: :Physical review letters 2016
L-K Zeng R Lou D-S Wu Q N Xu P-J Guo L-Y Kong Y-G Zhong J-Z Ma B-B Fu P Richard P Wang G T Liu L Lu Y-B Huang C Fang S-S Sun Q Wang L Wang Y-G Shi H M Weng H-C Lei K Liu S-C Wang T Qian J-L Luo H Ding

By combining angle-resolved photoemission spectroscopy and quantum oscillation measurements, we performed a comprehensive investigation on the electronic structure of LaSb, which exhibits near-quadratic extremely large magnetoresistance (XMR) without any sign of saturation at magnetic fields as high as 40 T. We clearly resolve one spherical and one intersecting-ellipsoidal hole Fermi surfaces (...

2016
Hui Li Hongtao He Hai-Zhou Lu Huachen Zhang Hongchao Liu Rong Ma Zhiyong Fan Shun-Qing Shen Jiannong Wang

A large negative magnetoresistance (NMR) is anticipated in topological semimetals in parallel magnetic fields, demonstrating the chiral anomaly, a long-sought high-energy-physics effect, in solid-state systems. Recent experiments reveal that the Dirac semimetal Cd3As2 has the record-high mobility and positive linear magnetoresistance in perpendicular magnetic fields. However, the NMR has not ye...

2017
Anna Corinna Niemann Johannes Gooth Shu-Chun Wu Svenja Bäßler Philip Sergelius Ruben Hühne Bernd Rellinghaus Chandra Shekhar Vicky Süß Marcus Schmidt Claudia Felser Binghai Yan Kornelius Nielsch

NbP is a recently realized Weyl semimetal (WSM), hosting Weyl points through which conduction and valence bands cross linearly in the bulk and exotic Fermi arcs appear. The most intriguing transport phenomenon of a WSM is the chiral anomaly-induced negative magnetoresistance (NMR) in parallel electric and magnetic fields. In intrinsic NbP the Weyl points lie far from the Fermi energy, making ch...

Journal: :Nature materials 2013
S Ishiwata Y Shiomi J S Lee M S Bahramy T Suzuki M Uchida R Arita Y Taguchi Y Tokura

The electron mobility is one of the key parameters that characterize the charge-carrier transport properties of materials, as exemplified by the quantum Hall effect as well as high-efficiency thermoelectric and solar energy conversions. For thermoelectric applications, introduction of chemical disorder is an important strategy for reducing the phonon-mediated thermal conduction, but is usually ...

2015
Irene Aguilera Christoph Friedrich Stefan Blügel Peter Grünberg

We present quasiparticle self-consistent GW (QSGW ) calculations of semimetallic bulk Bi. We go beyond the conventional QSGW method by including the spin-orbit coupling throughout the self-consistency cycle. This approach improves the description of the electron and the hole pockets considerably with respect to standard density functional theory (DFT), leading to excellent agreement with experi...

2017
Kentaro Ueda Taekoo Oh Bohm-Jung Yang Ryoma Kaneko Jun Fujioka Naoto Nagaosa Yoshinori Tokura

The interplay between electron correlation and spin-orbit coupling in solids has been proven to be an abundant gold mine for emergent topological phases. Here we report the results of systematic magnetotransport study on bandwidth-controlled pyrochlore iridates R2Ir2O7 near quantum metal-insulator transition (MIT). The application of a magnetic field along [001] crystallographic direction (H//[...

2016
Yao Li Karel-Alexander N. Duerloo Kerry Wauson Evan J. Reed

Dynamic control of conductivity and optical properties via atomic structure changes is of technological importance in information storage. Energy consumption considerations provide a driving force towards employing thin materials in devices. Monolayer transition metal dichalcogenides are nearly atomically thin materials that can exist in multiple crystal structures, each with distinct electrica...

Journal: :Physical review letters 2006
Igor F Herbut

The low-energy theory of interacting electrons on graphene's two-dimensional honeycomb lattice is derived and discussed. In particular, the Hubbard model in the large-N limit is shown to have a semimetal-antiferromagnetic insulator quantum critical point in the universality class of the Gross-Neveu model. The same equivalence is conjectured to hold in the physical case N=2, and its consequences...

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