The Quantum Twisting Microscope
arXiv:2208.05492 · doi:10.1038/s41586-022-05685-y
Abstract
The invention of scanning probe microscopy has revolutionized the way electronic phenomena are visualized. While present-day probes can access a variety of electronic properties at a single location in space, a scanning microscope that can directly probe the quantum mechanical existence of an electron at multiple locations would provide direct access to key quantum properties of electronic systems, so far unreachable. Here, we demonstrate a conceptually new type of scanning probe microscope - the Quantum Twisting Microscope (QTM) - capable of performing local interference experiments at its tip. The QTM is based on a unique van-der-Waals tip, allowing the creation of pristine 2D junctions, which provide a multitude of coherently-interfering paths for an electron to tunnel into a sample. With the addition of a continuously scanned twist angle between the tip and sample, this microscope probes electrons in momentum space similar to the way a scanning tunneling microscope probes electrons in real space. Through a series of experiments, we demonstrate room temperature quantum coherence at the tip, study the twist angle evolution of twisted bilayer graphene, directly image the energy bands of monolayer and twisted bilayer graphene, and finally, apply large local pressures while visualizing the evolution of the flat energy bands of the latter. The QTM opens the way for novel classes of experiments on quantum materials.
References in corpus (16)
- Recent progress in the assembly of nanodevices and van der Waals heterostructures by deterministic placement of 2D materials
- Continuum Model of the Twisted Bilayer
- Moiré heterostructures as a condensed matter quantum simulator
- Twist-controlled resonant tunnelling in graphene-boron nitride-graphene heterostructures
- Superconductivity in rhombohedral trilayer graphene
- Half and quarter metals in rhombohedral trilayer graphene
- Flatbands in twisted double bilayer graphene
- Gate-Tunable Resonant Tunneling in Double Bilayer Graphene Heterostructures
- In situ twistronics of van der Waals heterostructures
- Angle-resolved photoemission spectroscopy
- Tuning the valley and chiral quantum state of Dirac electrons in van der Waals heterostructures
- Emergent Interfacial Superconductivity between Twisted Cuprate Superconductors
- Superconducting Quantum Interference in Twisted van der Waals Heterostructures
- Tunable Graphene Electronics with Local Ultrahigh Pressure
- Emergence of Interlayer Coherence in Twist-Controlled Graphene Double Layers
- Quantum Lifetime Spectroscopy and Magnetotunneling in Double Bilayer Graphene Heterostructures
Cited by in corpus (59)
- A Microscopic Perspective on Moiré Materials
- Programming moiré patterns in 2D materials by bending
- Roadmap for Photonics with 2D Materials
- Heavy quasiparticles and cascades without symmetry breaking in twisted bilayer graphene
- Dynamical correlations and order in magic-angle twisted bilayer graphene
- Twist-Dependent Anisotropic Thermal Conductivity in Homogeneous MoS Stacks
- Measuring Phonon Dispersion and Electron-Phason Coupling in Twisted Bilayer Graphene with a Cryogenic Quantum Twisting Microscope
- Chiral Pseudo Spin Liquids in Moire Heterostructures
- Inhomogeneity-Induced Time-Reversal Symmetry Breaking in Cuprate Twist-Junctions
- Magnetochiral Charge Pumping due to Charge Trapping and Skin Effect in Chirality-Induced Spin Selectivity
- Probing the tunable multi-cone bandstructure in Bernal bilayer graphene
- Realizing Topological Superconductivity in Tunable Bose-Fermi Mixtures with Transition Metal Dichalcogenide Heterostructures
- Probing quantum spin liquids with a quantum twisting microscope
- Microscopic Mechanism of Anyon Superconductivity Emerging from Fractional Chern Insulators
- Roadmap on Quantum Magnetic Materials
- Probing magnetism in moiré heterostructures with quantum twisting microscopes
- Twisted-bilayer FeSe and the Fe-based superlattices
- "Quantum bipolaron" superconductivity from quadratic electron-phonon coupling
- Theory of intervalley-coherent AFM order and topological superconductivity in tWSe
- Angle-Tuned Gross-Neveu Quantum Criticality in Twisted Bilayer Graphene: A Quantum Monte Carlo Study
- Nonlocal Moments in the Chern Bands of Twisted Bilayer Graphene
- Flat and tunable moire phonons in twisted transition-metal dichalcogenides
- Theory of phonon spectroscopy with the quantum twisting microscope
- Magnetic States of Graphene Proximitized Kitaev Materials
- Probing the order parameter symmetry of two-dimensional superconductors by twisted Josephson interferometry
- Twist-tuned quantum criticality in moiré bilayer graphene
- Single-particle spectral function of fractional quantum anomalous Hall states
- Emerging chirality and moiré dynamics in twisted layered material heterostructures
- Twisted bilayer graphene reveals its flat bands under spin pumping
- Milli-Tesla Quantization enabled by Tuneable Coulomb Screening in Large-Angle Twisted Graphene
- Imaging the Sub-Moiré Potential Landscape using an Atomic Single Electron Transistor
- The Interacting Energy Bands of Magic Angle Twisted Bilayer Graphene Revealed by the Quantum Twisting Microscope
- Moiré fractals in twisted graphene layers
- Analog of cosmological particle production in Dirac materials
- Cascades in transport and optical conductivity of Twisted Bilayer Graphene
- Exactly Solvable Model of Randomly Coupled Twisted Superconducting Bilayers
- Programmable, Spontaneous Superlattice Memory in a Monolayer Topological Insulator
- Oscillate and Renormalize: Fast Phonons Reshape the Kondo Effect in Flat Band Systems
- Interface engineering of van der Waals heterostructures towards energy-efficient quantum devices operating at high temperatures
- Momentum-resolved spectroscopy of superconductivity with the quantum twisting microscope
- All-optical band structure reconstruction and onset of Landau quantization of Dirac fermions
- Ultimate charge transport regimes in doping-controlled graphene laminates: phonon-assisted processes revealed by the linear magnetoresistance
- Impact of the angular alignment on the crystal field and intrinsic doping of bilayer graphene/BN heterostructures
- Twisted Nodal Superconductors
- Wavefunction textures in twisted bilayer graphene from first principles
- Anyon-trions in atomically thin semiconductor heterostructures
- Angular momentum of vortex-core Majorana zero modes
- Twisted bilayer graphene from first-principles: structural and electronic properties
- Charged moiré phonons in twisted bilayer graphene
- Perpendicular electronic transport and moiré-induced resonance in twisted interfaces of three-dimensional graphite
- Artificial electrostatic crystals: a new platform for creating correlated quantum states
- Observation of an isolated flat band in the van der Waals crystal NbOCl
- Spin-orbital magnetism in moiré Wigner molecules
- Local phase-space Berry curvature and Hall transport in textured twisted bilayer graphene
- Decomposing Electronic Structures in Twisted Multilayers: Bridging Spectra and Incommensurate Wave Functions
- Probing the features of electron dispersion by tunneling between slightly twisted bilayer graphene sheets
- Generation of high-OAM ultraviolet twisted light for RF-photoinjector applications
- Enhanced Phonon-Assisted Tunneling in Metal -- Twisted Bilayer Graphene Junctions
- Twist-Tuned Magnonic Nanocavity Mode in a Trilayer Moiré Superlattice