Research paper
Experimental CharacterizationTheoreticalEach sample groups how it was prepared, characterized, and measured. Click a card to expand.
5 characterizations3 properties2 figures
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Cryogenic shock exfoliation for ultrahigh mobility rhombohedral graphite nanoelectronics
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Absence of a Superradiant Phase Transition in Dirac Landau Polaritons
Electro-Optical Switching in a Nonlinear Metasurface
The Interacting Energy Bands of Magic Angle Twisted Bilayer Graphene Revealed by the Quantum Twisting Microscope
Unconventional domain tessellations in moiré-of-moiré lattices
Plasmonic polarization sensing of electrostatic superlattice potentials
Large spin signal and spin rectification in folded-bilayer graphene
Layer-dependent electromechanical response in twisted graphene moiré superlattices
Corrugation-dominated mechanical softening of defect-engineered graphene
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Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
5 characterizations3 properties2 figures
Related documents with shared materials, methods, properties, or citations.
Cryogenic shock exfoliation for ultrahigh mobility rhombohedral graphite nanoelectronics
Josephson junctions based on ultraclean carbon nanotubes
Absence of a Superradiant Phase Transition in Dirac Landau Polaritons
Electro-Optical Switching in a Nonlinear Metasurface
The Interacting Energy Bands of Magic Angle Twisted Bilayer Graphene Revealed by the Quantum Twisting Microscope
Unconventional domain tessellations in moiré-of-moiré lattices
Plasmonic polarization sensing of electrostatic superlattice potentials
Large spin signal and spin rectification in folded-bilayer graphene
Layer-dependent electromechanical response in twisted graphene moiré superlattices
Corrugation-dominated mechanical softening of defect-engineered graphene
Structural classification of boron nitride twisted bilayers and ab initio investigation of their stacking-dependent electronic structure
Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
5 characterizations3 properties2 figures
Related documents with shared materials, methods, properties, or citations.
Cryogenic shock exfoliation for ultrahigh mobility rhombohedral graphite nanoelectronics
Josephson junctions based on ultraclean carbon nanotubes
Absence of a Superradiant Phase Transition in Dirac Landau Polaritons
Electro-Optical Switching in a Nonlinear Metasurface
The Interacting Energy Bands of Magic Angle Twisted Bilayer Graphene Revealed by the Quantum Twisting Microscope
Unconventional domain tessellations in moiré-of-moiré lattices
Plasmonic polarization sensing of electrostatic superlattice potentials
Large spin signal and spin rectification in folded-bilayer graphene
Layer-dependent electromechanical response in twisted graphene moiré superlattices
Corrugation-dominated mechanical softening of defect-engineered graphene
Structural classification of boron nitride twisted bilayers and ab initio investigation of their stacking-dependent electronic structure
Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
5 characterizations3 properties2 figures
Related documents with shared materials, methods, properties, or citations.
Cryogenic shock exfoliation for ultrahigh mobility rhombohedral graphite nanoelectronics
Josephson junctions based on ultraclean carbon nanotubes
Absence of a Superradiant Phase Transition in Dirac Landau Polaritons
Electro-Optical Switching in a Nonlinear Metasurface
The Interacting Energy Bands of Magic Angle Twisted Bilayer Graphene Revealed by the Quantum Twisting Microscope
Unconventional domain tessellations in moiré-of-moiré lattices
Plasmonic polarization sensing of electrostatic superlattice potentials
Large spin signal and spin rectification in folded-bilayer graphene
Layer-dependent electromechanical response in twisted graphene moiré superlattices
Corrugation-dominated mechanical softening of defect-engineered graphene
Structural classification of boron nitride twisted bilayers and ab initio investigation of their stacking-dependent electronic structure