Pairing superconducting qubits with microwave cavities could reduce the hardware requirements for quantum simulations of fundamental physics. See how this hybrid approach works: https://go.aps.org/3UbRkvC
Circuit QED Feed
by @andreasateth.bsky.social
This feed covers content relalted to circuit quantum electrodynamics, or short circuit QED, a field of research that makes use of the strong coupling of microwave photons to qubits for research in quantum optics and for applications in quantum computing.
🔬 Could superconducting qubits act as one-way streets for microwaves ? A new study reports non-reciprocal transmission and direction-selective photon emission in a waveguide QED system. Find out more here: https://ow.ly/Tsbn50Zoll6
Liang Jiang: solving an elliptic-curve crypto scheme takes about half a million superconducting qubits for 20 minutes, or tens of thousands of atomic qubits over a few days. Full talk: https://www.youtube.com/watch?v=_edssYqFozY #AASF #LiangJiang #QuantumComputing
Discover the latest quantum computing research at APS Global Physics Summit 2026, March 16–19. From optimized algorithms to superconducting qubits and error characterization, there’s a lot to explore → http://goo.gle/46UJFoI
AI agents just ran a quantum experiment on superconducting qubits using GPT‑5.6 Sol and Codex—MIT’s latest software automation breakthrough. Curious how code is now controlling the lab? Dive in! #AIAgents #QuantumExperiments #SuperconductingQubits 🔗 aidailypost.com/news/ai-agen...
TL;DR • Engineered noise creates entanglement between two superconducting qubits separated by a metre‑long cable (proof‑of‑concept) [2000003]. • First diamond‑spin processor integrates tin‑vacancy centers into a photonic chip, operating at –271.6 °C with promising coherence [2000005].
A new scalable method disambiguates Pauli noise in quantum computer models, improving the accuracy of quantum error mitigation on processors with up to 92 superconducting qubits. More in PRX Quantum: https://go.aps.org/4zVUkMF
#ICYMI: Researchers implemented a quantum neural network on two different platforms: trapped ions and superconducting qubits. The work helps establish whether trainable models can make use of superposition and other quantum effects: https://go.aps.org/3TuQiKn
Superconducting Qubits & Algorithms Conference is underway! Visit us at booth S14 to discuss #quantum infrastructure for superconducting qubit platforms, from modular cryogenic architectures to next-generation quantum I/O. See you at #SQA2026! #quantumcomputing #CoolForProgress
SQA Conference starts tomorrow and we're excited for a week of all things superconducting qubits! ⚛️ Swing by Booth S2 for a live demo of our bring-up and simulation softwares and don’t forget to sign up for our workshop on Wednesday: www.sqa-conference.org/app?day=1 #SQA2026 #SuperconductingQubits
Looking forward to be attending the Superconducting Qubits & Algorithms (SQA) 2026 conference in Gothenburg, Sweden from August 25 to 28. I will be giving an invited keynote talk on the opening evening and present new work on #quantum error correction from our lab.