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Comment on “Orientation dependence of the optical spectra in graphene at high frequencies”

Zhang et al. reported a theoretical study of the optical spectra of monolayer graphene employing the Kubo formula within a tight-binding model. Their...

Erratum: Asymptotic freedom at zero temperature in free-standing crystalline membranes [Phys. Rev. B 89, 125433 (2014)]

Journal: Volume: Article: Source: http://link.aps.org/doi/10.1103/PhysRevB.94.079904

Toward practical quantum computers

Quantum computers are largely hypothetical devices that could perform some calculations much more rapidly than conventional computers can. Instead of...

Photoconductivity of Graphene in Proximity to LaAlO_{3} /SrTiO_{3} Heterostructures: Phenomenon and Photosensor Applications

Long Cheng1, Xiaodong Fan1, Laiming Wei1,2,†, Juanjuan Lu1, Haixing Liang1, Ji Qi1, and Changgan Zeng1,2,3,*1Hefei National Laboratory for Physical Sciences at the Microscale...

PT Symmetry and Singularity-Enhanced Sensing Based on Photoexcited Graphene Metasurfaces

We introduce here a parity-time-(PT) symmetric system using an optically pumped, active graphene metasurface paired with a resistive metallic filament, realizing a unidirectional...

Evidencing the need for high spatial resolution in angle-resolved photoemission experiments

Angle-resolved photoemission spectroscopy (ARPES) is the most direct tool to measure the electronic structure of materials. In particular, fine features of the spectra...

Tuning electronic properties of graphene heterostructures by amorphous-to-crystalline phase transitions

The remarkable ability of phase change materials (PCM) to switch between amorphous and crystalline states on a nanosecond time scale could provide new...

Interplay between nanometer-scale strain variations and externally applied strain in graphene

We present a molecular modeling study analyzing nanometer-scale strain variations in graphene as a function of externally applied tensile strain. We consider two...

Realizing topological Mott insulators from the RKKY interaction

We engineer topological insulating phases in a fermion-fermion mixture on the honeycomb lattice, without resorting to artificial gauge fields or spin-orbit couplings and...

Researchers find unexpected magnetic effect

A new and unexpected magnetic effect has taken researchers by surprise, and could open up a new pathway to advanced...

Spatially resolving unconventional interface Landau quantization in a graphene monolayer-bilayer planar junction

Hybrid quantum Hall (QH) junctions have been extensively studied by transport measurements due to their exciting physics and device applications. Here we report...

Research highlight: Jagadeesh Moodera

MIT Physics Department Senior Research Scientist Jagadeesh S. Moodera was one of the pioneers in the field of spin-polarized magnetic...

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