collaborators

5 papers

quant-ph2026

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…

quant-ph2026

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…

quant-ph2026

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…

quant-ph2026

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…

quant-ph2025

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…