I’m excited to announce that our first IBM Quantum Osprey processor, ibm_seattle (https://t.co/Vh02IOvHAV), is now live for access as an exploratory technical demonstration on our cloud services.
We are designing a large-scale cryogenic platform for the needs of quantum computing.
We have made it our mission to make sure we provide the right technologies to support the players in the quantum ecosystem. KIDE is one of our solutions for this.
Learn more from the video!
I’m excited to share our latest work on quantum error correction. We’ve experimentally demonstrated the suppression of quantum errors by scaling a surface code logical qubit from distance-3 (17 qubits) to distance-5 (49 qubits). You can read it here: https://t.co/GpQJiMFQgm
Today we released our updated IBM quantum development roadmap. To learn more, check out the video (https://t.co/HJvK07MWXQ) and the blog (https://t.co/w3ngKEdNts). 1/n
@VepsalainenA and @RoniWinik's paper on closed-loop feedback has appeared in Nature Communications!
Very excited about this work, where we use an FPGA to dramatically improve the stability and the coherence of superconducting qubits
https://t.co/ntzreHvkVF
🔨 Break out your tools! Today we're diving into building a scalable #quantum computer 👷♀️👷
🗞️ In this recent @IEEEXplore publication, @ella_lior discusses #quantumcontrol hardware: why we need it and the challenges it poses: https://t.co/wLIbTkZfmq
[2103.10344] Circuit quantum electrodynamics (cQED) with modular quasi-lumped models https://t.co/nWr111Hf9h
Check out some of my latest work on #quantum devices
#APSmarch
Reducing gate error rates and fluctuations by fast feedback?🤩 Music🎶 to our ears Antti, @RoniWinik, @oliver_mit and the rest of the MIT EQuS team
#APSMarch
"On March 5, China announced that it would increase its research and development investment by an average of more than 7% per year in its five-year plan starting in 2021, citing AI and semiconductors as well as quantum technology as important areas."
https://t.co/NRUemP0gqB