Erasure conversion for fault-tolerant quantum computing in alkaline earth Rydberg atom arrays
arXiv:2201.03540 · doi:10.1038/s41467-022-32094-6
Abstract
Executing quantum algorithms on error-corrected logical qubits is a critical step for scalable quantum computing, but the requisite numbers of qubits and physical error rates are demanding for current experimental hardware. Recently, the development of error correcting codes tailored to particular physical noise models has helped relax these requirements. In this work, we propose a qubit encoding and gate protocol for Yb neutral atom qubits that converts the dominant physical errors into erasures, that is, errors in known locations. The key idea is to encode qubits in a metastable electronic level, such that gate errors predominantly result in transitions to disjoint subspaces whose populations can be continuously monitored via fluorescence. We estimate that 98% of errors can be converted into erasures. We quantify the benefit of this approach via circuit-level simulations of the surface code, finding a threshold increase from 0.937% to 4.15%. We also observe a larger code distance near the threshold, leading to a faster decrease in the logical error rate for the same number of physical qubits, which is important for near-term implementations. Erasure conversion should benefit any error correcting code, and may also be applied to design new gates and encodings in other qubit platforms.
References in corpus (21)
- Surface codes: Towards practical large-scale quantum computation
- Quantum Phases of Matter on a 256-Atom Programmable Quantum Simulator
- Programmable quantum simulation of 2D antiferromagnets with hundreds of Rydberg atoms
- Quantum Low-Density Parity-Check Codes
- Demonstration of fault-tolerant universal quantum gate operations
- The XZZX Surface Code
- Fault-tolerant operation of a logical qubit in a diamond quantum processor
- Fault-tolerant quantum computation against biased noise
- Errors in trapped-ion quantum gates due to spontaneous photon scattering
- Assembly and coherent control of a register of nuclear spin qubits
- A magic state's fidelity can be superior to the operations that created it
- Blueprint for trapped ion quantum computing with metastable states
- Realizing coherently convertible dual-type qubits with the same ion species
- Fast Preparation and Detection of a Rydberg Qubit using Atomic Ensembles
- Coherence preservation of a single neutral atom qubit transferred between magic-intensity optical traps
- Fault-Tolerant Operation of a Quantum Error-Correction Code
- Fault-Tolerant Weighted Union-Find Decoding on the Toric Code
- Controlling Rydberg excitations using ion core transitions in alkaline earth atom tweezer arrays
- Quantum teleportation of physical qubits into logical code-spaces
- Certified quantum gates
- Hardware-Efficient, Fault-Tolerant Quantum Computation with Rydberg Atoms
Cited by in corpus (124)
- Logical quantum processor based on reconfigurable atom arrays
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- Mid-circuit correction of correlated phase errors using an array of spectator qubits
- Quantum networks with neutral atom processing nodes
- A dual-species Rydberg array
- Quantum Error Correction with Metastable States of Trapped Ions Using Erasure Conversion
- Mid-circuit measurements on a single species neutral alkali atom quantum processor
- Erasure qubits: Overcoming the limit in superconducting circuits
- High threshold codes for neutral atom qubits with biased erasure errors
- Dual-rail encoding with superconducting cavities
- Demonstrating a long-coherence dual-rail erasure qubit using tunable transmons
- Benchmarking highly entangled states on a 60-atom analog quantum simulator
- Rydberg superatoms: An artificial quantum system for quantum information processing and quantum optics
- Optimizing Rydberg Gates for Logical Qubit Performance
- Repetitive readout and real-time control of nuclear spin qubits in Yb atoms
- High-fidelity parametric beamsplitting with a parity-protected converter
- Analyzing the Rydberg-based omg architecture for Yb nuclear spins
- Multi-ensemble metrology by programming local rotations with atom movements
- A universal neutral-atom quantum computer with individual optical addressing and non-destructive readout
- Measuring Arbitrary Physical Properties in Analog Quantum Simulation
- Dicke superradiance in ordered arrays of multilevel atoms
- Measurement-free fault-tolerant quantum error correction in near-term devices
- All-microwave leakage reduction units for quantum error correction with superconducting transmon qubits
- Long-lived entanglement of molecules in magic-wavelength optical tweezers
- Enhanced quantum control of individual ultracold molecules using optical tweezer arrays
- High-fidelity remote entanglement of trapped atoms mediated by time-bin photons
- Quantum Error Correction with Quantum Autoencoders
- Two-axis twisting using Floquet-engineered XYZ spin models with polar molecules
- Protocols for Rydberg entangling gates featuring robustness against quasi-static errors
- Distributed quantum error correction for chip-level catastrophic errors
- Advances in Bosonic Quantum Error Correction with Gottesman-Kitaev-Preskill Codes: Theory, Engineering and Applications
- Computational Capabilities and Compiler Development for Neutral Atom Quantum Processors: Connecting Tool Developers and Hardware Experts
- Erasure-cooling, control, and hyper-entanglement of motion in optical tweezers
- Active cancellation of servo-induced noise on stabilized lasers via feedforward
- Single-qubit gates with errors at the level
- Introduction to Quantum Error Correction and Fault Tolerance
- Scalable Networking of Neutral-Atom Qubits: Nanofiber-Based Approach for Multiprocessor Fault-Tolerant Quantum Computer
- Fault-tolerant quantum computation using large spin cat-codes
- Imaging stars with quantum error correction
- Localized statistics decoding for quantum low-density parity-check codes
- High-rate quantum LDPC codes for long-range-connected neutral atom registers
- Hybrid Oscillator-Qubit Quantum Processors: Instruction Set Architectures, Abstract Machine Models, and Applications
- Dark-state enhanced loading of an optical tweezer array
- Neutral atom entanglement using adiabatic Rydberg dressing
- Circuit-based leakage-to-erasure conversion in a neutral atom quantum processor
- Optimized measurement-free and fault-tolerant quantum error correction for neutral atoms
- Solving optimization problems with local light shift encoding on Rydberg quantum annealers
- Proposal for simulating quantum spin models with the Dzyaloshinskii-Moriya interaction using Rydberg atoms and the construction of asymptotic quantum many-body scar states
- A hybrid atom tweezer array of nuclear spin and optical clock qubits
- Long-range-enhanced surface codes
- Impact of decoherence on the fidelity of quantum gates leaving the computational subspace
- Error correction of transversal CNOT gates for scalable surface code computation
- Optimizing quantum error correction protocols with erasure qubits
- Quantum Error Correction resilient against Atom Loss
- Fault-tolerant quantum architectures based on erasure qubits
- Entangling quantum logic gates in neutral atoms via the microwave-driven spin-flip blockade
- Benchmarking quantum gates and circuits
- ERASER: Towards Adaptive Leakage Suppression for Fault-Tolerant Quantum Computing
- Erasure Decoding for Quantum LDPC Codes via Belief Propagation with Guided Decimation
- Spin squeezed GKP codes for quantum error correction in atomic ensembles
- Quantum adiabatic optimization with Rydberg arrays: localization phenomena and encoding strategies
- Stable Symmetry-Protected Topological Phases in Systems with Heralded Noise
- Fault-tolerant hyperbolic Floquet quantum error correcting codes
- Leveraging Qubit Loss Detection in Fault Tolerant Quantum Algorithms
- The Floquet Fluxonium Molecule: Driving Down Dephasing in Coupled Superconducting Qubits
- A high optical access cryogenic system for Rydberg atom arrays with a 3000-second trap lifetime
- Concatenation Schemes for Topological Fault-tolerant Quantum Error Correction
- Realization of a fast triple-magic all-optical qutrit in strontium-88
- Surface Code with Imperfect Erasure Checks
- Logical multi-qubit entanglement with dual-rail superconducting qubits
- Coherence-preserving cooling of nuclear spin qubits in a weak magnetic field
- Recovering Quantum Coherence of a Cavity Qubit Coupled to a Noisy Ancilla through Real-Time Feedback
- Precise certification of a qubit space
- Fast nuclear-spin gates and electrons-nuclei entanglement of neutral atoms in weak magnetic fields
- Efficient fault-tolerant implementations of non-Clifford gates with reconfigurable atom arrays
- Coherent Information Phase Transition in a Noisy Quantum Circuit
- Dark spin-cats as biased qubits
- Stabilizing Non-Abelian Topological Order against Heralded Noise via Local Lindbladian Dynamics
- Hamilton-Jacobi-Bellman equations for Rydberg-blockade processes
- Entangled states from sparsely coupled spins for metrology with neutral atoms
- Fundamental thresholds for computational and erasure errors via the coherent information
- Quantum low-density parity-check codes for erasure-biased atomic quantum processors
- Magic State Injection with Erasure Qubits
- Erasure conversion in Majorana qubits via local quasiparticle detection
- Enhancing optical lattice clock coherence times with erasure conversion
- Logical qubits with erasure conversion using metastable neutral atoms
- Universal gates for a metastable qubit in strontium-88
- Low-depth quantum error correction via three-qubit gates in Rydberg atom arrays
- Inertial geometric quantum logic gates
- Measurement-free quantum error correction optimized for biased noise
- Autoionization-enhanced Rydberg dressing by fast contaminant removal
- Single-atom imaging of Yb in optical tweezers loaded by a five-beam magneto-optical trap
- Error metric for non-trace-preserving quantum operations
- Two-photon cooling of calcium atoms
- Non-local resources for error correction in quantum LDPC codes
- Dynamically generated concatenated codes and their phase diagrams
- Multiplexed Quantum Communication with Surface and Hypergraph Product Codes
- State-insensitive wavelengths for light shifts and photon scattering from Zeeman states
- Measurement-free reconstruction circuit of quantum secrets in quantum secret sharing
- Spontaneous Raman scattering out of a metastable atomic qubit
- Towards self-correcting quantum codes for neutral atom arrays
- Single Sr Atoms in Optical Tweezer Arrays for Quantum Simulation
- Describing quantum metrology with erasure errors using weight distributions of classical codes
- Taming Rydberg Decay with Measurement-based Quantum Computation
- Accurate Leakage Speculation for Quantum Error Correction
- Entanglement boosting: Low-volume logical Bell pair preparation for distributed fault-tolerant quantum computation
- Multiqubit Rydberg Gates for Quantum Error Correction
- Quantum error correction in a time-dependent transverse field Ising model
- Locating Rydberg Decay Error in SWAP-Leakage Reduction Circuit Protocol
- Geometrical Approach to Logical Qubit Fidelities of Neutral Atom CSS Codes
- Impure codes exceeding the pure bounds for quantum local recovery
- Decoherence Cancellation through Noise Interference
- High-efficiency loading of 2,400 Ytterbium atoms in optical tweezer arrays
- High-resolution spectroscopy of 162Dy Rydberg levels
- Proposal for erasure conversion in integer fluxonium qubits
- Symmetric gate for ultracold neutral atoms based on counterdiabatic driving at Rydberg excitation
- Structure Theorem for Quantum Replacer Codes
- Hierarchical Fusion Method for Scalable Quantum Eigenstate Preparation
- Single-shot conditional displacement gate between a trapped atom and traveling light
- Neural Decoders for Universal Quantum Algorithms
- Exactly-solved model of light-scattering errors in quantum simulations with metastable trapped-ion qubits
- All-to-all connectivity of Rydberg-atom-based quantum processors with messenger qubits