5 papers
Fault-tolerant distributed quantum computing with a single nucleus per node
Yotam Vaknin, Shoham Jacoby, Shoham Jaocby +3
Distributed quantum computing interconnects small, high-quality nodes through optical links, but this architecture carries a pronounced asymmetry: in-node gates and measurements ar…
Fast measurement of neutral atoms with a multi-atom gate
Yotam Vaknin, Ran Finkelstein, Ofer Firstenberg +1
Measurement time represents a critical bottleneck limiting the operational speed of neutral atom quantum computers, as it cannot be accelerated through parallelization like other q…
Efficient Magic State Cultivation on the Surface Code
Yotam Vaknin, Shoham Jacoby, Arne Grimsmo +1
Magic state cultivation is a leading approach for generating the resource states required for fault-tolerant quantum computation. Here we present a new cultivation protocol that in…
Optimizing quantum error correction protocols with erasure qubits
Shouzhen Gu, Yotam Vaknin, Alex Retzker +1
Erasure qubits offer a promising avenue toward reducing the overhead of quantum error correction (QEC) protocols. However, they require additional operations, such as erasure check…
Magic State Injection with Erasure Qubits
Shoham Jacoby, Yotam Vaknin, Alex Retzker +1
Erasure qubits constitute a promising approach for tackling the daunting resources required for fault-tolerant quantum computing. By heralding erasure errors, both the error-correc…