NewsLayer

Install NewsLayer

Get the app experience — one tap from your home screen, instant loads and breaking-news alerts.

NewsLayer.com
LatestDaily BriefMarkets
NewsLayer PulseLIVE₿BTC$76,356-3.05%ΞETH$2,421-4.26%◎SOL$99.15-3.33%✕XRP$1.39-2.28%ÐDOGE$0.0817-3.28%₳ADA$0.2021-4.15%Total Cap$2.59T-3.07%24H Vol$133.1BLayer Index34 Fear
BreakingETH wallet exploit backfires as MEV bot captures $7.7M, Kelp freezes address1 小时前
Markets
HomeQuantumArtificial Intelligence

Quantum|Artificial Intelligence

USC And Quantum Elements’ Error Correction Technique Demonstrates Surface Code Scaling with Logical Qubits

Insider Brief PRESS RELEASE — Quantum Elements, a provider of AI-powered digital twins for quantum computing developers, and the University of Southern California (USC) today announced the publication of a Nature Communications paper…

Matt Swayne

Publisher The Quantum Insider

Sep 15, 2026 at 1:06 PM UTC · Updated 2 小时前 · 3 分钟阅读

USC And Quantum Elements’ Error Correction Technique Demonstrates Surface Code Scaling with Logical Qubits
Image via The Quantum Insider

Market Impact

Total MCap-3.07%

Last Updated

2 小时前

Skip to content

USC And Quantum Elements’ Error Correction Technique Demonstrates Surface Code Scaling with Logical Qubits

Insider Brief

  • Quantum Elements and USC demonstrated that surface codes can improve error protection on IBM Heron processors despite a mismatch between the code’s square-grid design and the hardware’s heavy-hex layout.
  • The researchers combined a depth-efficient surface code with dynamical decoupling to suppress errors that accumulated while qubits were idle.
  • The results suggest quantum processors may achieve error-correction gains without being designed around the precise geometry of a particular code.

PRESS RELEASE — Quantum Elements, a provider of AI-powered digital twins for quantum computing developers, and the University of Southern California (USC) today announced the publication of a Nature Communications paper showing that the surface code can improve error protection even on a quantum processor whose physical layout does not naturally match the code. The authors were able to demonstrate logical qubits and achieved below-threshold performance on IBM Heron processors’ heavy-hex architecture, even though it is not optimized for surface codes. 

The peer-reviewed paper, Surface code scaling on heavy-hex superconducting quantum processors, co-authored by Daniel Lidar, Quantum Elements Chief Scientific Officer and Director of the USC Center for Quantum Information Science & Technology, and Quantum Elements quantum research scientist Arian Vezvaee, among others, outlines the use of the surface code, an error-correction method, on two IBM Heron-generation processors.  

The surface code is designed around a square grid of connected qubits. IBM Heron-generation processors use a more sparsely connected heavy-hex architecture. Mapping the code onto this hardware requires additional routing and creates periods when qubits sit idle and errors accumulate as the code grows. The researchers addressed this by combining a depth-efficient code with the dynamical decoupling approach that later became the foundation for Quantum Elements’ Qiskit Function, Orbit. This suppressed the damaging idle-time noise and enabled directional subthreshold scaling. When the code grew in one direction, it became more effective at protecting against the corresponding type of logical error. Professor Lidar helped develop the theoretical and practical foundations behind this error suppression method.

The result is an important step toward more flexible fault-tolerant quantum systems. It shows that a processor does not have to be designed around the exact geometry of the surface code to receive the scaling benefits, meaning that the code has the potential to be adapted across a broader range of superconducting architectures.

“Because a given error correcting code and hardware may not always match, we wanted to test the limits of making the surface code — designed for square lattices — work on IBM’s heavy-hex hardware,” said Professor Lidar. “We found that only by leveraging the dynamical decoupling techniques deployed in Quantum Elements’ Qiskit Function, Orbit, we were able to demonstrate the expected improvements as the surface code’s distance parameters increased. Hybrid decoupling-error correction approaches, such as what we demonstrated in this work, will likely continue to outperform either approach on its own in future quantum processors.”

Quantum processors must meet a wide range of engineering requirements, not just the demands of a particular error-correcting code. If scalable error correction requires a processor’s physical layout to match the code, hardware developers would be forced to prioritize code compatibility over other design considerations. This would leave some processors with fewer options for achieving fault tolerance. 

“This shows the power of hybrid approaches to move us towards fault tolerant quantum computing.”  said Izhar Medalsy, co-founder and CEO of Quantum Elements. “This is just the first step toward implementing entangled logical qubits — which we will reveal more details on soon – that will be another major advance toward achieving fault-tolerant quantum computing.”

One of our team will be in touch to learn more about your requirements, and provide pricing and access options.

We use cookies to analyse traffic and improve your experience. Privacy Policy

#quantum#ai

Sourced by

Originally reported by The Quantum Insider

NewsLayer coverage based on externally reported material.

The Daily Brief

The onchain economy, before your day starts.

Curated markets, onchain insights, and key headlines — delivered every weekday morning.

Weekdays · Free · ~5 minute read

0

Applause

Was this article helpful?

Market Context

Total Market Cap$2.59T-3.07%
24H Volume$133.1B
BTC Dominance59.0%
ETH Dominance11.5%

Updated 5 分钟前

View All Markets

Article Intelligence

Topics

quantumai

Related Coverage

Artificial IntelligenceAnyon Computing Unveils NVQLink-Based Quantum Control System2 小时前 · 3 min readQuantumQuantum Elements and USC Demonstrate Surface Code Scaling on IBM Heron2 小时前 · 1 min read
View all related

Sponsored

Ad
House — Advertise on NewsLayer
NewsLayerLearn more

NewsLayer Premium

Unlock deeper intelligence.

Ad-free reading, exclusive research, and real-time onchain insights.

Go Premium

Previous Story

IQM sells second quantum computer to Japan’s Toyo

Next Story

Oxford Physicists Help Uncover ‘Spooky’ Quantum Effect in The Large Hadron Collider

Keep Reading

相关报道

QC Design Integrates Plaquette With NVIDIA CUDA-Q Logical for Hardware-Realistic QEC SimulationBULL RUN

QC Design Integrates Plaquette With NVIDIA CUDA-Q Logical for Hardware-Realistic QEC Simulation

Insider Brief PRESS RELEASE — QC Design today announced an integration between Plaquette, its design-automation platform for fault-tolerant quantum computing (FTQC), and NVIDIA CUDA-Q Logical, the open, extensible logical layer of the CUDA-Q platform. This collaboration enables quantum hardware teams to perform accurate simulations of lattice surgery and other logical protocols using realistic, physics-based hardware […]

2 小时前

1 分钟阅读
Zapata Quantum CEO Sumit Kapur Named to Boston Business Journal’s 2026 Power 50DEFI DISPATCH

Zapata Quantum CEO Sumit Kapur Named to Boston Business Journal’s 2026 Power 50

Insider Brief PRESS RELEASE — Zapata Quantum (OTCQB: ZPTA) (“Zapata,” “Zapata Quantum” or the “Company”), a leader in quantum computing algorithm and application development, today announced that its CEO, Sumit Kapur, has been selected by The Boston Business Journal for the publication’s annual Power 50: Movement Makers. The Boston Business Journal chooses honorees who are […]

3 小时前

1 分钟阅读
Bitcoin price recovery unlikely to lure AI-focused miners back, CoinShares saysBITCOIN BEAT

Bitcoin price recovery unlikely to lure AI-focused miners back, CoinShares says

Bitcoin price recovery unlikely to lure AI-focused miners back, CoinShares says The Block

1 小时前

1 分钟阅读
NewsLayer.com

The front page of the onchain economy. Crypto, Web3 and regulation intelligence — live prices, original research and policy tracking in one layer.

Follow on XTelegram

News

  • Latest News
  • The Daily Brief
  • Crypto
  • DeFi
  • Policy
  • Web3
  • Blockchain
  • Explainers

Markets

  • Market News
  • Layer Index
  • Live Charts
  • DeFi Protocols
  • Regulation Tracker
  • Regulation Radar

Company

  • About NewsLayer
  • Advertise
  • PR Publication
  • Become an Author
  • Our Authors
  • Create Account
  • Sign in

Resources

  • Research
  • NewsLayer Originals
  • My Feed
  • Search
  • AI Sector
  • Quantum Sector

NewsLayer Premium

Read the full layer.

Unlock premium intelligence, original research and an ad-free reading experience.

  • Premium Intelligence briefings
  • Ad-free reading experience
  • Members-only research & data
Go Premium

© 2026 NewsLayer.com — The front page of the onchain economy

Privacy Policy·Terms of Service
NewsLayer

Get the signal, not the noise.

Markets, regulation and onchain intelligence in a 5-minute morning read — plus breaking alerts and Layer Index flips as they happen.

The Daily Brief

Breaking alerts

Index flips

Free · No spam · Unsubscribe anytime