71 citations · 75 across the 9 of their papers we have counts for
13 papers · 1 filter
Fault-Tolerant Quantum Computing with Trapped Ions: The Walking Cat Architecture
Felix Tripier, Woo Chang Chung, Jacob Young +15
We propose a fault-tolerant quantum computer architecture for trapped-ion devices, which we call the walking cat architecture. Our blueprint includes a compiler, a detailed descrip…
Advantage in distributed quantum computing with slow interconnects
Evan E Dobbs, Nicolas Delfosse, Aharon Brodutch
The main bottleneck for distributed quantum computing is the rate at which entanglement is produced between quantum processing units (QPUs). In this work, we prove that multiple QP…
Recursive Clifford noise reduction
Aharon Brodutch, Gregory Baimetov, Edwin Tham +1
Clifford noise reduction (CliNR) is a partial error correction scheme that reduces the logical error rate of Clifford circuits at the cost of a modest qubit and gate overhead. The…
Pathfinding Quantum Simulations of Neutrinoless Double-Beta Decay
Ivan A. Chernyshev, Roland C. Farrell, Marc Illa +10
We present results from co-designed quantum simulations of the neutrinoless double-beta decay of a simple nucleus in 1+1D quantum chromodynamics using IonQ's Forte-generation trapp…
Preferred Interaction Ranges in Neutral-Atom Arrays in the Presence of Noise
David C. Spierings, Edwin Tham, Aharon Brodutch +1
Successful execution of a quantum information processing (QIP) task on a quantum processing device depends on the availability of high-quality entangling gates. Two important goals…
Measuring the time atoms spend in the excited state due to a photon they don't absorb
Josiah Sinclair, Daniela Angulo, Kyle Thompson +3
When a resonant photon traverses a sample of absorbing atoms, how much time do atoms spend in the excited state? Does the answer depend on whether the photon is ultimately absorbed…