Fast universal quantum control above the fault-tolerance threshold in silicon
arXiv:2108.02626 · doi:10.1038/s41586-021-04182-y
Abstract
Fault-tolerant quantum computers which can solve hard problems rely on quantum error correction. One of the most promising error correction codes is the surface code, which requires universal gate fidelities exceeding the error correction threshold of 99 per cent. Among many qubit platforms, only superconducting circuits, trapped ions, and nitrogen-vacancy centers in diamond have delivered those requirements. Electron spin qubits in silicon are particularly promising for a large-scale quantum computer due to their nanofabrication capability, but the two-qubit gate fidelity has been limited to 98 per cent due to the slow operation.Here we demonstrate a two-qubit gate fidelity of 99.5 per cent, along with single-qubit gate fidelities of 99.8 per cent, in silicon spin qubits by fast electrical control using a micromagnet-induced gradient field and a tunable two-qubit coupling. We identify the condition of qubit rotation speed and coupling strength where we robustly achieve high-fidelity gates. We realize Deutsch-Jozsa and Grover search algorithms with high success rates using our universal gate set. Our results demonstrate the universal gate fidelity beyond the fault-tolerance threshold and pave the way for scalable silicon quantum computers.
References in corpus (12)
- Surface codes: Towards practical large-scale quantum computation
- Single-shot read-out of an individual electron spin in a quantum dot
- Randomized Benchmarking of Quantum Gates
- An addressable quantum dot qubit with fault-tolerant control fidelity
- Quantum computing with nearest neighbor interactions and error rates over 1%
- Scalable gate architecture for densely packed semiconductor spin qubits
- CMOS-based cryogenic control of silicon quantum circuits
- Suppressing qubit dephasing using real-time Hamiltonian estimation
- Quantifying the quantum gate fidelity of single-atom spin qubits in silicon by randomized benchmarking
- Quantum tomography of an entangled three-spin state in silicon
- Radio-frequency detected fast charge sensing in undoped silicon quantum dots
- Robust micro-magnet design for fast electrical manipulations of single spins in quantum dots
Cited by in corpus (246)
- Semiconductor Spin Qubits
- High-fidelity parallel entangling gates on a neutral atom quantum computer
- Universal control of a six-qubit quantum processor in silicon
- Qubits made by advanced semiconductor manufacturing
- Two-qubit silicon quantum processor with operation fidelity exceeding 99%
- Precision tomography of a three-qubit donor quantum processor in silicon
- Quantum error correction with silicon spin qubits
- Review of performance metrics of spin qubits in gated semiconducting nanostructures
- Probing single electrons across 300 mm spin qubit wafers
- Universal logic with encoded spin qubits in silicon
- Noisy intermediate-scale quantum computers
- Conveyor-mode single-electron shuttling in Si/SiGe for a scalable quantum computing architecture
- A single hole spin with enhanced coherence in natural silicon
- High-fidelity operation and algorithmic initialisation of spin qubits above one kelvin
- A shuttling-based two-qubit logic gate for linking distant silicon quantum processors
- Roadmap for Unconventional Computing with Nanotechnology
- Reducing charge noise in quantum dots by using thin silicon quantum wells
- Operating semiconductor quantum processors with hopping spins
- Atomic fluctuations lifting the energy degeneracy in Si/SiGe quantum dots
- Recent advances in hole-spin qubits
- The SpinBus Architecture: Scaling Spin Qubits with Electron Shuttling
- Multicore Quantum Computing
- High fidelity state preparation, quantum control, and readout of an isotopically enriched silicon spin qubit
- Noise-correlation spectrum for a pair of spin qubits in silicon
- Practical Strategies for Enhancing the Valley Splitting in Si/SiGe Quantum Wells
- On-demand electrical control of spin qubits
- Colloquium: Advances in automation of quantum dot devices control
- Shuttling an electron spin through a silicon quantum dot array
- Low charge noise quantum dots with industrial CMOS manufacturing
- Assessment of error variation in high-fidelity two-qubit gates in silicon
- Si/SiGe QuBus for single electron information-processing devices with memory and micron-scale connectivity function
- Coherent spin qubit shuttling through germanium quantum dots
- Crosstalk Suppression in Individually Addressed Two-Qubit Gates in a Trapped-Ion Quantum Computer
- Navigating the 16-dimensional Hilbert space of a high-spin donor qudit with electric and magnetic fields
- Universal control of four singlet-triplet qubits
- Spin-EPR-pair separation by conveyor-mode single electron shuttling in Si/SiGe
- A 300 mm foundry silicon spin qubit unit cell exceeding 99% fidelity in all operations
- Realizing quantum gates with optically-addressable Yb ion qudits
- Two-qubit logic with anisotropic exchange in a fin field-effect transistor
- Gate-Controlled Quantum Dots Based on Two-Dimensional Materials
- Spatial noise correlations beyond nearest-neighbor in Si/SiGe spin qubits
- Realization of High-Fidelity CZ Gate based on a Double-Transmon Coupler
- Modelling semiconductor spin qubits and their charge noise environment for quantum gate fidelity estimation
- Low disorder and high valley splitting in silicon
- Hotter is easier: unexpected temperature dependence of spin qubit frequencies
- Double-Transmon Coupler: Fast Two-Qubit Gate with No Residual Coupling for Highly Detuned Superconducting Qubits
- Gate-tunable, superconductor-semiconductor parametric amplifier
- Efficient realization of quantum algorithms with qudits
- Nonlinear response and crosstalk of electrically driven silicon spin qubits
- Ultrahigh-fidelity spatial mode quantum gates in high-dimensional space by diffractive deep neural networks
- Rapid single-shot parity spin readout in a silicon double quantum dot with fidelity exceeding 99 %
- Grover's algorithm in a four-qubit silicon processor above the fault-tolerant threshold
- Coherent spin-valley oscillations in silicon
- Electrical control of uniformity in quantum dot devices
- Blueprint for quantum computing using electrons on helium
- Quantum control of hole spin qubits in double quantum dots
- Mapping of valley-splitting by conveyor-mode spin-coherent electron shuttling
- High-fidelity single-spin shuttling in silicon
- Engineering Phonon-Qubit Interactions using Phononic Crystals
- Utilizing multimodal microscopy to reconstruct Si/SiGe interfacial atomic disorder and infer its impacts on qubit variability
- Continuous dynamical decoupling of optical Yb qudits with radiofrequency fields
- Bounds to electron spin qubit variability for scalable CMOS architectures
- Looped Pipelines Enabling Effective 3D Qubit Lattices in a Strictly 2D Device
- Tailoring quantum error correction to spin qubits
- Wafer-scale low-disorder 2DEG in Si/SiGe without an epitaxial Si cap
- Strategies for enhancing spin-shuttling fidelities in Si/SiGe quantum wells with random-alloy disorder
- Rapid cryogenic characterisation of 1024 integrated silicon quantum dots
- High-fidelity spin qubit shuttling via large spin-orbit interaction
- Interface and electromagnetic effects in the valley splitting of Si quantum dots
- Blueprint for all-to-all connected superconducting spin qubits
- Towards early fault tolerance on a 2N array of qubits equipped with shuttling
- Real-time two-axis control of a spin qubit
- Phase driving hole spin qubits
- Universal quantum computing with qubits embedded in trapped-ion qudits
- Jellybean quantum dots in silicon for qubit coupling and on-chip quantum chemistry
- Beating the thermal limit of qubit initialization with a Bayesian Maxwell's demon
- Spin dynamics in quantum dots on liquid helium
- An automated approach for consecutive tuning of quantum dot arrays
- Flopping-mode spin qubit in a Si-MOS quantum dot
- Tomography of entangling two-qubit logic operations in exchange-coupled donor electron spin qubits
- Generalized Toffoli gate decomposition using ququints: Towards realizing Grover's algorithm with qudits
- Atomic Quantum Technologies for Quantum Matter and Fundamental Physics Applications
- Towards multiqudit quantum processor based on a Yb ion string: Realizing basic quantum algorithms
- Crosstalk- and charge-noise-induced multiqubit decoherence in exchange-coupled quantum dot spin qubit arrays
- Spin-orbit enhancement in Si/SiGe heterostructures with oscillating Ge concentration
- Cavity-mediated entanglement of parametrically driven spin qubits via sidebands
- Exploiting epitaxial strained germanium for scaling low noise spin qubits at the micron-scale
- Microwave-frequency scanning gate microscopy of a Si/SiGe double quantum dot
- Individually Addressed Entangling Gates in a Two-Dimensional Ion Crystal
- Scalable on-chip multiplexing of silicon single and double quantum dots
- Electrical operation of hole spin qubits in planar MOS silicon quantum dots
- An error-protected cross-resonance switch in weakly-tuneable architectures
- Scalable estimation of pure multi-qubit states
- Feedback-based active reset of a spin qubit in silicon
- Single-electron occupation in quantum dot arrays at selectable plunger gate voltage
- Coupling conduction-band valleys in SiGe heterostructures via shear strain and Ge concentration oscillations
- Predicting Phonon-Induced Spin Decoherence from First Principles: Colossal Spin Renormalization in Condensed Matter
- Hardware-Conscious Optimization of the Quantum Toffoli Gate
- Kondo effect in electrostatically defined ZnO quantum dots
- Valley-Free Silicon Fins Caused by Shear Strain
- Genuine multipartite entanglement in a one-dimensional Bose-Hubbard model with frustrated hopping
- Atomistic compositional details and their importance for spin qubits in isotope-purified silicon-germanium quantum wells
- Scalable improvement of the generalized Toffoli gate realization using trapped-ion-based qutrits
- Valley splitting depending on the size and location of a silicon quantum dot
- A quantum dot-based frequency multiplier
- Improved placement precision of implanted donor spin qubits in silicon using molecule ions
- Two-qubit CZ gates robust against charge noise in silicon while compensating for crosstalk using neural network
- Demonstrating experimentally the encoding and dynamics of an error-correctable logical qubit on a hyperfine-coupled nuclear spin qudit
- Identifying Pauli spin blockade using deep learning
- Valleytronic full configuration-interaction approach: An application to the excitation spectra of Si double-dot qubits
- Limits to Quantum Gate Fidelity from Near-Field Thermal and Vacuum Fluctuations
- Optimal control of a cavity-mediated iSWAP gate between silicon spin qubits
- Cross-architecture Tuning of Silicon and SiGe-based Quantum Devices Using Machine Learning
- Multi-module microwave assembly for fast read-out and charge noise characterization of silicon quantum dots
- Coupled vertical double quantum dots at single-hole occupancy
- Accelerated adiabatic passage of a single electron spin qubit in quantum dots
- Industrially fabricated single-electron quantum dots in Si/Si-Ge heterostructures
- Violating Bell's inequality in gate-defined quantum dots
- Modular Autonomous Virtualization System for Two-Dimensional Semiconductor Quantum Dot Arrays
- Devitalizing noise-driven instability of entangling logic in silicon devices with bias controls
- Designing globally optimal entangling gates using geometric space curves
- Analysis and mitigation of residual exchange coupling in linear spin qubit arrays
- Exploring ab initio machine synthesis of quantum circuits
- Flopping-mode electron dipole spin resonance in the strong-driving regime
- Single-step high-fidelity three-qubit gates by anisotropic chiral interactions
- Faster variational quantum algorithms with quantum kernel-based surrogate models
- Fully autonomous tuning of a spin qubit
- Many-body theory of phonon-induced spin relaxation and decoherence
- Theory of Valley Splitting in Si/SiGe Spin-Qubits: Interplay of Strain, Resonances and Random Alloy Disorder
- Nuclear Spin Engineering for Quantum Information Science
- Measurement-Device-Independenization of Quantum Key Distribution Protocols
- High temperature spin selectivity in a quantum dot qubit using reservoir spin accumulation
- Fast high-fidelity geometric gates for singlet-triplet qubits
- Compressed gate characterization for quantum devices with time-correlated noise
- Detecting quantum critical points at finite temperature via quantum teleportation: further models
- Local laser-induced solid-phase recrystallization of phosphorus-implanted Si/SiGe heterostructures for contacts below 4.2 K
- Passive and active suppression of transduced noise in silicon spin qubits
- Detecting quantum critical points at finite temperature via quantum teleportation
- Autonomous Bootstrapping of Quantum Dot Devices
- Photo-assisted spin transport in double quantum dots with spin-orbit interaction
- Impact of electrostatic crosstalk on spin qubits in dense CMOS quantum dot arrays
- Optimizing nonadiabatic geometric quantum gates against off-resonance error by dynamical correction in a silicon-based spin qubit
- Coupling two charge qubits via a superconducting resonator operating in the resonant and dispersive regimes
- Near-Term Spin-Qubit Architecture Design via Multipartite Maximally-Entangled States
- Acceptor-based qubit in silicon with tunable strain
- Improved Single-Shot Qubit Readout Using Twin RF-SET Charge Correlations
- Entanglement engineering of optomechanical systems by reinforcement learning
- Gate reflectometry in dense quantum dot arrays
- Theory of Silicon Spin Qubit Relaxation in a Synthetic Spin-Orbit Field
- High-fidelity CNOT gate for spin qubits with asymmetric driving using virtual gates
- Measurement of cryoelectronics heating using a local quantum dot thermometer in silicon
- Singlet-triplet-state readout in silicon-metal-oxide-semiconductor double quantum dots
- beSnake: A routing algorithm for scalable spin-qubit architectures
- Finite temperature detection of quantum critical points: a comparative study
- Electric dipole spin resonance in single and two electron quantum dot defined in two-dimensional electron gas at the SrTiO/LaAlO interface
- Neural-network-designed three-qubit gates robust against charge noise and crosstalk in silicon
- An elongated quantum dot as a distributed charge sensor
- A compact and versatile cryogenic probe station for quantum device testing
- Geometric correspondence of noisy quantum dynamics and universal robust quantum gates
- Visual explanations of machine learning model estimating charge states in quantum dots
- Full tunability and quantum coherent dynamics of a driven multilevel system
- Tailoring potentials by simulation-aided design of gate layouts for spin qubit applications
- Highly tunable 2D silicon quantum dot array with coupling beyond nearest neighbors
- Designing quantum error correction codes for practical spin qudit
- Noise Correlations in a 1D Silicon Spin Qubit Array
- Dispersive cavity-mediated quantum gate between driven dot-donor nuclear spins
- Dissipation and gate timing errors in SWAP operations of qubits
- Valley Splitting Correlations Across a Silicon Quantum Well Containing Germanium
- Finite temperature detection of quantum critical points via internal quantum teleportation
- High-Fidelity Entangling Gates for Electron and Nuclear Spin Qubits in Diamond
- Quantum estimation and remote charge sensing with a hole-spin qubit in silicon
- Protocols to measure the non-Abelian Berry phase by pumping a spin qubit through a quantum-dot loop
- Erasure conversion for singlet-triplet spin qubits enables high-performance shuttling-based quantum error correction
- Compiling the surface code to crossbar spin qubit architectures
- Scalable Parity Architecture With a Shuttling-Based Spin Qubit Processor
- The Role of Quantum Computing in Advancing Scientific High-Performance Computing: A perspective from the ADAC Institute
- Parametric longitudinal coupling of a semiconductor charge qubit and a RF resonator
- Quantum Computation by Spin Parity Measurements with Encoded Spin Qubits
- A 2x2 quantum dot array in silicon with fully tuneable pairwise interdot coupling
- Longitudinal coupling between electrically driven spin-qubits and a resonator
- Beyond-adiabatic Quantum Admittance of a Semiconductor Quantum Dot at High Frequencies: Rethinking Reflectometry as Polaron Dynamics
- Dispersive readout of a silicon quantum device using an atomic force microscope-based rf gate sensor
- Formation of multiple quantum dots in ZnO heterostructures
- Theory of superconducting proximity effect in hole-based hybrid semiconductor-superconductor devices
- Pursuing high-fidelity control of spin qubits in natural Si/SiGe quantum dot
- Solve single photon detector problems
- Multi-qubit DC gates over an inhomogeneous array of quantum dots
- Unifying non-Markovian characterisation with an efficient and self-consistent framework
- Ultra-Fast All-Electrical Universal Nano-Qubits
- Minimal evolution times for fast, pulse-based state preparation in silicon spin qubits
- Radiofrequency cascade readout of coupled spin qubits
- Interplay of Zeeman Splitting and Tunnel Coupling in Coherent Spin Qubit Shuttling
- Hole spin splitting in a Ge quantum dot with finite barriers
- Coulomb collisions of hot and cold single electrons in series-coupled silicon single-electron pumps
- Revealing correlated noise with single-qubit operations
- Supervised binary classification of small-scale digit images and weighted graphs with a trapped-ion quantum processor
- Measurement-Based Entanglement of Semiconductor Spin Qubits
- Ab initio modelling of quantum dot qubits: Coupling, gate dynamics and robustness versus charge noise
- Mapping Spin Interactions from Conductance Peak Splitting in Coulomb Blockade
- Toolchain for Faster Iterations in Quantum Software Development
- Singlet-only Always-on Gapless Exchange Qubits with Baseband Control
- Second Quantization: Gating a Quantum Dot Through the Sequential Removal of Single Electrons from a Nanoscale Floating Gate
- Charge state estimation in quantum dots using a Bayesian approach
- Decoherence in Exchange-Coupled Quantum Spin Qubit Systems: Impact of Multiqubit Interactions and Geometric Connectivity
- Variational quantum compiling for three-qubit gates design in quantum dots
- Electrical Interconnects for Silicon Spin Qubits
- Correcting on-chip distortion of control pulses with silicon spin qubits
- A SWAP Gate for Spin Qubits in Silicon
- Towards Utilizing Scanning Gate Microscopy as a High-Resolution Probe of Valley Splitting in Si/SiGe Heterostructures
- Active Learning for Quantum Mechanical Measurements
- Limitations of the -tensor formalism of semiconductor spin qubits
- A generalized model of the noise spectrum of a two-level fluctuator in the presence of an electron subbath
- Dressed basis sets for the modeling of exchange interactions in double quantum dots
- Fabrication, characterization and mechanical loading of Si/SiGe membranes for spin qubit devices
- Effects of leakage on the realization of a discrete time crystal in a chain of singlet-triplet qubits
- Charge-induced energy shift of a single-spin qubit under a magnetic-field gradient
- Threshold-independent method for single-shot readout of spin qubits in semiconductor quantum dots
- The effects of alloy disorder on strongly-driven flopping mode qubits in Si/SiGe
- State Initialization of a Hot Spin Qubit in a Double Quantum Dot by Measurement-Based Quantum Feedback Control
- Highly Tunable Two-Qubit Interactions in Si/SiGe Quantum Dots by Interchanging the Roles of Qubit-Defining Gates
- Quantum Error Correction Assisted Axion Search in CMOS Spin Qubit Arrays
- Teleportation based detection of quantum critical points using small spin chains
- High-fidelity spin readout via the double latching mechanism
- Control of threshold voltages in Si/SiGe quantum devices via optical illumination
- Transpiling quantum assembly language circuits to a qudit form
- Comparison of spin-qubit architectures for quantum error-correcting codes
- Spin qubit shuttling between coupled quantum dots with inhomogeneous Landé g-tensors
- Extending Qubit Coherence Time via Hybrid Dynamical Decoupling
- Suppression of coherent errors during entangling operations in NV centers in diamond
- Phonon-induced frequency shift in semiconductor spin qubits
- Synthesis and upper bound of Schmidt rank of the bipartite controlled-unitary gates
- Electrically driven spin resonance with bichromatic driving
- Fault-Tolerant Encoding of Logical Qudits in Spin Systems
- Robust iSWAP gates for semiconductor spin qubits with local driving
- Nonlinear path-following via the asymptotic numerical method on a quantum processor
- Enhanced local addressability of a spin array with local exchange pulses and global microwave driving
- Radio-frequency charge detection on graphene electron-hole double quantum dots
- Realizable time crystal of four silicon quantum dot qubits
- Fault-tolerant Quantum Error Correction Using a Linear Array of Emitters
- Color it, Code it, Cancel it: k-local dynamical decoupling from classical additive codes
- Interplay of Pauli blockade with electron-photon coupling in quantum dots
- Digital-Controlled Method of Conveyor-Belt Spin Shuttling in Silicon for Large-Scale Quantum Computation
- Robust shaped pulses for arrays of superconducting or semiconductor spin qubits with fixed Ising coupling
- Robust composite two-qubit gates for silicon-based spin qubits
- Negative exchange interaction in Si quantum dot arrays via valley-phase induced gauge field
- Exact Multi-Valley Envelope Function Theory of Valley Splitting in Si/SiGe Nanostructures