Nanomaterials for Quantum Information Science and Engineering
arXiv:2202.03090 · doi:10.1002/adma.202109621
Abstract
Quantum information science and engineering (QISE) which entails use of quantum mechanical states for information processing, communications, and sensing and the area of nanoscience and nanotechnology have dominated condensed matter physics and materials science research in the 21st century. Solid state devices for QISE have, to this point, predominantly been designed with bulk materials as their constituents. In this review, we consider how nanomaterials (i.e. materials with intrinsic quantum confinement) may offer inherent advantages over conventional materials for QISE. We identify the materials challenges for specific types of qubits, and we identify how emerging nanomaterials may overcome these challenges. Challenges for and progress towards nanomaterials based quantum devices are identified. We aim to help close the gap between the nanotechnology and quantum information communities and inspire research that will lead to next generation quantum devices for scalable and practical quantum applications.
Review article. To appear in Advanced Materials
References in corpus (79)
- Electric Field Effect in Atomically Thin Carbon Films
- The electronic properties of graphene
- Supplementary information for "Quantum supremacy using a programmable superconducting processor"
- Non-Abelian Anyons and Topological Quantum Computation
- The Quantum Internet
- Experimental quantum teleportation
- Superconducting proximity effect and Majorana fermions at the surface of a topological insulator
- Signatures of Majorana fermions in hybrid superconductor-semiconductor nanowire devices
- Majorana Fermions and a Topological Phase Transition in Semiconductor-Superconductor Heterostructures
- Charge insensitive qubit design derived from the Cooper pair box
- High-sensitivity diamond magnetometer with nanoscale resolution
- Satellite-to-ground quantum key distribution
- Integrated Circuits Based on Bilayer MoS2 Transistors
- Gate-induced insulating state in bilayer graphene devices
- Observation of Majorana Fermions in a Nb-InSb Nanowire-Nb Hybrid Quantum Device
- The Renaissance of Black Phosphorus
- Driven coherent oscillations of a single electron spin in a quantum dot
- Valley Dependent Optoelectronics from Inversion Symmetry Breaking
- Spin qubits in graphene quantum dots
- Coherent control of a single electron spin with electric fields
- An addressable quantum dot qubit with fault-tolerant control fidelity
- Measurement device independent quantum key distribution over 404 km optical fibre
- Quantum teleportation using active feed-forward between two Canary Islands
- Coupling of Spin and Orbital Motion of Electrons in Carbon Nanotubes
- Coherent Single Photon Emission from Colloidal Lead Halide Perovskite Quantum Dots
- Quantum teleportation and entanglement distribution over 100-kilometre free-space channels
- Spin-Orbit Proximity Effect in Graphene
- Quantum Storage of Photonic Entanglement in a Crystal
- Epitaxy of Semiconductor-Superconductor nanowires
- Electric Field Induced Topological Phase Transition in Two-Dimensional Few-layer Black Phosphorus
- One-Dimensional Hole Gas in Germanium/Silicon Nanowire Heterostructures
- Silicon-Vacancy Spin Qubit in Diamond: A Quantum Memory Exceeding 10 ms with Single-Shot State Readout
- Circuit Quantum Electrodynamics with a Spin Qubit
- Fractional statistics in anyon collisions
- Quantum information transfer using photons
- A solid-state entangled photon pair source with high brightness and indistinguishability
- Advances in InGaAs/InP single-photon detector systems for quantum communication
- Prospects for Spin-Based Quantum Computing
- One-dimensional Topological Edge States of Bismuth Bilayers
- Experimental Long-Distance Decoy-State Quantum Key Distribution Based On Polarization Encoding
- Quantum memory for squeezed light
- Van der Waals Materials for Atomically-Thin Photovoltaics: Promise and Outlook
- Efficient quantum memory for single photon polarization qubits
- Low-decoherence flux qubit
- Superconducting Nanowire Single-Photon Detectors for Quantum Information
- Experimental demonstration of fault-tolerant state preparation with superconducting qubits
- Observation of ballistic avalanche phenomena in nanoscale vertical InSe/BP heterostructures
- Ion traps with enhanced optical and physical access
- Coherent properties of single rare-earth spin qubits
- Femtosecond Laser Writing of Spin Defects in Hexagonal Boron Nitride
- Towards high mobility InSb nanowire devices
- Cavity-funneled generation of indistinguishable single photons from strongly dissipative quantum emitters
- Van der Waals heteroepitaxial growth of monolayer Sb in puckered honeycomb structure
- Excited states in bilayer graphene quantum dots
- Ultrasensitive magnetic field detection using a single artificial atom
- Photogating of mono- and few-layer MoS2
- Efficient electrical spin readout of NV- centers in diamond
- Coupling spin defects in hexagonal boron nitride to monolithic bullseye cavities
- Exciton diffusion, end quenching, and exciton-exciton annihilation in individual air-suspended carbon nanotubes
- Majorana Fermions in Ge/Si Hole Nanowires
- Identifying defect-related quantum emitters in monolayer WSe
- Single Photon Source from a Nanoantenna-Trapped Single Quantum Dot
- Quantum spin Hall effect induced by electric field in silicene
- All-Optical Manipulation of Electron Spins in Carbon-Nanotube Quantum Dots
- Planar and van der Waals heterostructures for vertical tunnelling single electron transistors
- Emerging Dirac and Majorana fermions for carbon nanotubes with proximity-induced pairing and spiral magnetic field
- Room-temperature single photon emission from micron-long air-suspended carbon nanotubes
- Plasmons in the van der Waals charge-density-wave material 2H-TaSe2
- Rapid detection of coherent tunneling in an InAs nanowire quantum dot through dispersive gate sensing
- Planar graphene-NbSe Josephson junctions in a parallel magnetic field
- Inlaid ReS2 Quantum Dots in Monolayer MoS2
- Pulsed-gate spectroscopy of single-electron spin states in bilayer graphene quantum dots
- Highly tuneable hole quantum dots in Ge-Si core-shell nanowires
- High-Fidelity Entangling Gates for Quantum-Dot Hybrid Qubits Based on Exchange Interactions
- Dynamics of a Mn spin coupled to a single hole confined in a quantum dot
- Dispersive sensing of charge states in a bilayer graphene quantum dot
- Cavity Quantum Electrodynamics Design with Single Photon Emitters in Hexagonal Boron Nitride
- Ordered arrays of InGaN/GaN dot-in-a-wire nanostructures as single photon emitters
- Optical control of an individual Cr spin in a semiconductor quantum dot