IonQ reached a significant research milestone in the development of high-speed, mixed-species quantum logic gates. This research theoretically demonstrates faster, higher-fidelity quantum gates with fewer errors, improving both scalability and time to solution. Learn more here: https://t.co/hCyvQKCEci
In a new @Optica paper, JILA and @NIST Fellow Jun Ye and his research group partnered with @NobelPrize winner and JILA and NIST Fellow Jan Hall to improve on the Pound-Drever-Hall technique for locking #lasers. Their results pushed laser stability to never-before-seen levels.
https://t.co/8Dv2PDwqGX
Congratulations!! More than well deserved — and absolutely wonderful news for the field! Besides the fundamental science importance, their work got many young students “entangled” with and excited about the wonders of the quantum world👏🎊💡⚛️
Today officially marks the start of my new @UKRI_News Frontier Research Grant on "Quantum Simulation with Ultracold Polar Molecules (SimPoMol)" awarded following my application to the ERC Advanced Grant 2021 call. It builds upon @QSUMproject in @DurhamQLM & @DurhamPhysics.
And another great success for Nathalie Picqué this year - "The Falling Walls Science Breakthrough of the Year" for her groundbreaking advancements of interferometry with optical frequency combs! Congratulations to Nathalie!!🥂@picquenathalie
We are excited to share our latest results on using co-located spectator qubits to correct correlated phase errors on data qubits! https://t.co/QUaTv8vEfn
We’re excited to announce our collaboration with @Airbus – one of the world's largest aerospace corporations - to explore potential applications and benefits of quantum computing for aerospace services and passenger experiences. More on the project below: https://t.co/07pgq6NO6Q
Every 2nd year physics student knows that two free particles that are elasticity colliding cannot form a bound state. in our manuscript
https://t.co/ZH2TH0HHVe
we show that when one of them (a trapped ion colliding with a cold atom) is no longer free a bound state is formed
Check out our new manuscript on the effect of fast noise on errors in trapped ions quantum gates: https://t.co/RpfV2RhXrW
Phase noise is always a problem when aiming for high fidelity coherent quantum operations.
Shimon Kolkowitz offers expert advice on improving @UofT 's admittedly disturbing slogan during his excellent @icap2022 talk on measuring the gravitational redshift.
MSc and PhD openings available! My research group at McGill University (starting 2023) is actively recruiting graduate students!
Details see https://t.co/7DBndPKQKI
#quantum#photonics#openings#PhD#MSC
Two-qubit ion trap gates with lasers use optical forces to generate entanglement between ions via the collective ion motion. If the lasers spill over to neighboring ions this results in unwanted two-qubit gates and a loss of fidelity. We fix it here https://t.co/CgRNTeQs4W