Amanote Research
Register
Sign In
Engineering Dirac Materials: Metamorphic InAs1xSbx/InAs1ySby Superlattices With Ultralow Bandgap
doi 10.1021/acs.nanolett.7b04304.s001
Full Text
Open PDF
Abstract
Available in
full text
Date
Unknown
Authors
Unknown
Publisher
American Chemical Society (ACS)
Related search
One-Dimensional Massless Dirac Bands in Semiconductor Superlattices
Physical Review B
Engineering a Cytochrome With a Tunable Bandgap Potential
Biophysical Journal
Biophysics
Dirac Semimetal States in Engineered Zero‐Gap InAs/GaInSb Superlattices
Physica Status Solidi (B): Basic Research
Optical
Electronic
Condensed Matter Physics
Magnetic Materials
Soft Phonons and Ultralow Lattice Thermal Conductivity in the Dirac Semimetal Cd3As2
Physical Review Research
Tunable Dirac Points and High Spin Polarization in Ferromagnetic-Strain Graphene Superlattices
Scientific Reports
Multidisciplinary
VUV Spectroscopy of Wide Bandgap Materials
Optical Materials
Organic Chemistry
Electronic Engineering
Spectroscopy
Theoretical Chemistry
Electronic
Molecular Physics,
Inorganic Chemistry
Optical
Electrical
Computer Science
Magnetic Materials
Physical
Optics
Atomic
Bandgap Engineering: Coupled Exfoliation and Surface Functionalization of Titanate Monolayer for Bandgap Engineering (Adv. Mater. Interfaces 7/2017)
Advanced Materials Interfaces
Mechanics of Materials
Mechanical Engineering
Zero‐Energy Vortices in Dirac Materials
Physica Status Solidi (B): Basic Research
Optical
Electronic
Condensed Matter Physics
Magnetic Materials
Imaging Bulk and Edge Transport Near the Dirac Point in Graphene Moire Superlattices