Silicon quantum processor with robust long-distance qubit couplings
arXiv:1509.08538 · doi:10.1038/s41467-017-00378-x
Abstract
Practical quantum computers require the construction of a large network of highly coherent qubits, interconnected in a design robust against errors. Donor spins in silicon provide state-of-the-art coherence and quantum gate fidelities, in a physical platform adapted from industrial semiconductor processing. Here we present a scalable design for a silicon quantum processor that does not require precise donor placement and allows hundreds of nanometers inter-qubit distances, therefore facilitating fabrication using current technology. All qubit operations are performed via electrical means on the electron-nuclear spin states of a phosphorus donor. Single-qubit gates use low power electric drive at microwave frequencies, while fast two-qubit gates exploit electric dipole-dipole interactions. Microwave resonators allow for millimeter-distance entanglement and interfacing with photonic links. Sweet spots protect the qubits from charge noise up to second order, implying that all operations can be performed with error rates below quantum error correction thresholds, even without any active noise cancellation technique.
References in corpus (40)
- Surface codes: Towards practical large-scale quantum computation
- An addressable quantum dot qubit with fault-tolerant control fidelity
- Dynamical decoupling and noise spectroscopy with a superconducting flux qubit
- Simple pulses for elimination of leakage in weakly nonlinear qubits
- High-fidelity preparation, gates, memory and readout of a trapped-ion quantum bit
- Amplification and squeezing of quantum noise with a tunable Josephson metamaterial
- Interfacing spin qubits in quantum dots and donors - hot, dense and coherent
- Towards fault-tolerant quantum computing with trapped ions
- Decoherence-protected quantum gates for a hybrid solid-state spin register
- Room temperature quantum bit storage exceeding 39 minutes using ionized donors in 28-silicon
- Silicon CMOS architecture for a spin-based quantum computer
- Electrometry Using Coherent Exchange Oscillations in a Singlet-Triplet-Qubit
- Strong Coupling of a Single Electron in Silicon to a Microwave Photon
- High Kinetic Inductance Superconducting Nanowire Resonators for Circuit QED in a Magnetic Field
- Topological quantum computing with a very noisy network and local error rates approaching one percent
- Coherent coupling of a single spin to microwave cavity photons
- Hyperfine-mediated gate-driven electron spin resonance
- Coherent dipole-dipole coupling between two single atoms at a Förster resonance
- Strong coupling of a spin qubit to a superconducting stripline cavity
- Electrically controlling single spin qubits in a continuous microwave field
- Rotating-frame relaxation as a noise spectrum analyzer of a superconducting qubit undergoing driven evolution
- Microwave-driven coherent operations of a semiconductor quantum dot charge qubit
- Quantifying the quantum gate fidelity of single-atom spin qubits in silicon by randomized benchmarking
- Physical mechanisms of interface-mediated intervalley coupling in Si
- A Dressed Spin Qubit in Silicon
- Quantum control of donor electrons at the Si-SiO2 interface
- Robust CNOT gates from almost any interaction
- Surface code architecture for donors and dots in silicon with imprecise and nonuniform qubit couplings
- Proposal for detection of a single electron spin in a microwave resonator
- Cryogenic preamplification of a single-electron-transistor using a silicon-germanium heterojunction-bipolar-transistor
- Pulse sequences for suppressing leakage in single-qubit gate operations
- Relaxation in quantum dots due to evanescent-wave Johnson noise from a metallic backgate
- Quantum control and manipulation of donor electrons in Si-based quantum computing
- Valley-enhanced fast relaxation of gate-controlled donor qubits in silicon
- Transport of Spin Qubits with Donor Chains under Realistic Experimental Conditions
- One-dimensional quantum computing with a 'segmented chain' is feasible with today's gate fidelities
- Valley interference effects on a donor electron close to a Si/SiO2 interface
- Statistical exchange-coupling errors and the practicality of scalable silicon donor qubits
- A silicon-based cluster state quantum computer
- Coherent coupling between a quantum dot and a donor in silicon
Cited by in corpus (90)
- Semiconductor Spin Qubits
- The European Quantum Technologies Roadmap
- Interfacing spin qubits in quantum dots and donors - hot, dense and coherent
- A 10-qubit solid-state spin register with quantum memory up to one minute
- Silicon CMOS architecture for a spin-based quantum computer
- Semiconductor Qubits In Practice
- Precision tomography of a three-qubit donor quantum processor in silicon
- Semiconductor Quantum Computation
- Quantum computers as universal quantum simulators: state-of-art and perspectives
- Coherent electrical control of a single high-spin nucleus in silicon
- Noisy intermediate-scale quantum computers
- Roadmap for gallium arsenide spin qubits
- Roadmap on quantum nanotechnologies
- Nanomaterials for Quantum Information Science and Engineering
- Machine Learning techniques for state recognition and auto-tuning in quantum dots
- Digital Quantum Simulation, Trotter Errors, and Quantum Chaos of the Kicked Top
- Donor spins in silicon for quantum technologies
- A silicon quantum-dot-coupled nuclear spin qubit
- Quantum coherent spin-electric control in a molecular nanomagnet at clock transitions
- Constant-overhead quantum error correction with thin planar connectivity
- Deterministic single ion implantation of rare-earth ions for nanometer resolution colour center generation
- Coupling a single electron spin to a microwave resonator: Controlling transverse and longitudinal couplings
- On-demand electrical control of spin qubits
- Conditional quantum operation of two exchange-coupled single-donor spin qubits in a MOS-compatible silicon device
- Navigating the 16-dimensional Hilbert space of a high-spin donor qudit with electric and magnetic fields
- Benchmarking high fidelity single-shot readout of semiconductor qubits
- Schrödinger cat states of a nuclear spin qudit in silicon
- Deterministic Single Ion Implantation with 99.87% Confidence for Scalable Donor-Qubit Arrays in Silicon
- Parity-to-charge conversion for readout of topological Majorana qubits
- Exploring quantum chaos with a single nuclear spin
- Quantum Accelerators for High-Performance Computing Systems
- Coherence properties of shallow donor qubits in ZnO
- Electric Control of Spin Transitions at the Atomic Scale
- Electron spin relaxation of single phosphorus donors in metal-oxide-semiconductor nanoscale devices
- Charge noise and overdrive errors in reflectometry-based charge, spin and Majorana qubit readout
- Braiding-based quantum control of a Majorana qubit built from quantum dots
- Radio-frequency methods for Majorana-based quantum devices: fast charge sensing and phase diagram mapping
- Parallel detection and spatial mapping of large nuclear spin clusters
- Adiabatic two-qubit gates in capacitively coupled quantum dot hybrid qubits
- Conditional dispersive readout of a CMOS quantum dot via an integrated transistor circuit
- Strategies for enhancing spin-shuttling fidelities in Si/SiGe quantum wells with random-alloy disorder
- Universal quantum computing using electro-nuclear wavefunctions of rare-earth ions
- Impact of valley phase and splitting on readout of silicon spin qubits
- Roadmap on Atomic-scale Semiconductor Devices
- Robust electric dipole transition at microwave frequencies for nuclear spin qubits in silicon
- Dispersive readout of molecular spin qudits
- Charge qubit in van der Waals heterostructures
- Real-time trajectory control on a deterministic ion source
- Cavity-mediated entanglement of parametrically driven spin qubits via sidebands
- Nuclear spin readout in a cavity-coupled hybrid quantum dot-donor system
- Isotopic enrichment of silicon by high fluence Si ion implantation
- Scalable Atomic Arrays for Spin-Based Quantum Computers in Silicon
- Valley filtering and spatial maps of coupling between silicon donors and quantum dots
- Loss-of-entanglement prediction of a controlled-PHASE gate in the framework of steepest-entropy-ascent quantum thermodynamics
- Electrical two-qubit gates within a pair of clock-qubit magnetic molecules
- Quantum tomography benchmarking
- Spin-photon coupling for atomic qubit devices in silicon
- Improved placement precision of implanted donor spin qubits in silicon using molecule ions
- Fast high-fidelity single-qubit gates for flip-flop qubits in silicon
- Near-Surface Electrical Characterisation of Silicon Electronic Devices Using Focused keV Ions
- Nonlinear flip-flop quantum walks through potential barriers
- Numerical Engineering of Robust Adiabatic Operations
- Hyperfine-assisted fast electric control of dopant nuclear spins in semiconductors
- Dephasing of Majorana qubits due to quasistatic disorder
- Acceptor-based qubit in silicon with tunable strain
- Symmetric quantum states: a review of recent progress
- Compressed Optimization of Device Architectures (CODA) for semiconductor quantum devices
- Optimisation of electrically-driven multi-donor quantum dot qubits
- Fast noise-resistant control of donor nuclear spin qubits in silicon
- Qubit guidelines for solid-state spin defects
- Designing quantum error correction codes for practical spin qudit
- Dispersive cavity-mediated quantum gate between driven dot-donor nuclear spins
- Noise Correlations in a 1D Silicon Spin Qubit Array
- Combining Neural Networks and Signed Particles to Simulate Quantum Systems More Efficiently
- Optically Controlled Entangling Gates in Randomly Doped Silicon
- 2-dimensional semiconductors pave the way towards dopant based quantum computing
- Spin relaxation of a donor electron coupled to interface states
- Quantum supremacy with analog quantum processors for material science and machine learning
- Hyperfine-assisted decoherence of a phosphorus nuclear-spin qubit in silicon
- Phase transformation-induced superconducting aluminium-silicon alloy rings
- Electron spin relaxations of phosphorus donors in bulk silicon under large electric field
- A single-atom quantum memory in silicon
- Fusion for High-Dimensional Linear Optical Quantum Computing with Improved Success Probability
- Impact of Parallel Gating on Gate Fidelities in Linear, Square, and Star Arrays of Noisy Flip-Flop Qubits
- Computational Phase Transitions: Benchmarking Ising Machines and Quantum Optimisers
- Comparing Schemes for Creating Qudit Graph States from 16- & 128-dimensional Hilbert Space using Donors in Silicon
- Coupling a Ge nuclear spin to an electrostatically defined quantum dot
- A silicon spin vacuum: isotopically enriched silicon-on-insulator and silicon from ultra-high fluence ion implantation
- Near-deterministic photon entanglement from a spin qudit in silicon using third quantisation
- Extending Qubit Coherence Time via Hybrid Dynamical Decoupling