2 citations · 2 across the 2 of their papers we have counts for
5 papers · 1 filter
Clifford synthesis via generalized S and CZ gates
Vadym Kliuchnikov, Marcus P. da Silva
We show that any -qubit Clifford unitary can be implemented using at most multi-qubit joint measurements. All the multi-qubit joint measurements used for implementing the C…
Phased outcome-complete simulation
Vadym Kliuchnikov, Adam Paetznick, Marcus P. da Silva
We generalize the polynomial-time outcome-complete simulation algorithm for stabilizer circuits in arXiv:2309.08676 to track global phases exactly, yielding what we call phased out…
A Topologically Fault-Tolerant Quantum Computer with Four Dimensional Geometric Codes
David Aasen, Matthew B. Hastings, Vadym Kliuchnikov +8
Topological quantum codes are intrinsically fault-tolerant to local noise, and underlie the theory of topological phases of matter. We explore geometry to enhance the performance o…
Fault-tolerant quantum computation with a neutral atom processor
Ben W. Reichardt, Adam Paetznick, David Aasen +69
Quantum computing experiments are transitioning from running on physical qubits to using encoded, logical qubits. Fault-tolerant computation can identify and correct errors, and ha…
End-to-End Quantum Simulation of a Chemical System
Wim van Dam, Hongbin Liu, Guang Hao Low +6
We demonstrate the first end-to-end integration of high-performance computing (HPC), reliable quantum computing, and AI in a case study on catalytic reactions producing chiral mole…