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20192026
most citedAsymptotic Improvements to Quantum Circuits via Qutrits

102 citations · 298 across the 18 of their papers we have counts for

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Showing 2023 · quant-phShow all

8 papers · 2 filters

quant-ph2023

qSIEVE: Efficient qLDPC Memory via Systolic Movement in Atom Arrays

Joshua Viszlai, Willers Yang, Sophia Fuhui Lin +4

As quantum machines have scaled up in their number of qubits, significant research has turned towards increasing their fidelity with quantum error correction codes. Although promis…

quant-ph2023

DGR: Tackling Drifted and Correlated Noise in Quantum Error Correction via Decoding Graph Re-weighting

Hanrui Wang, Pengyu Liu, Yilian Liu +4

Quantum hardware suffers from high error rates and noise, which makes directly running applications on them ineffective. Quantum Error Correction (QEC) is a critical technique towa…

quant-ph20235 cited

An Architecture for Improved Surface Code Connectivity in Neutral Atoms

Joshua Viszlai, Sophia Fuhui Lin, Siddharth Dangwal +2

In order to achieve error rates necessary for advantageous quantum algorithms, Quantum Error Correction (QEC) will need to be employed, improving logical qubit fidelity beyond what…

quant-ph2023

One-Time Compilation of Device-Level Instructions for Quantum Subroutines

Aniket S. Dalvi, Jacob Whitlow, Marissa D'Onofrio +5

A large class of problems in the current era of quantum devices involve interfacing between the quantum and classical system. These include calibration procedures, characterization…

quant-ph2023

Circuit decompositions and scheduling for neutral atom devices with limited local addressability

Natalia Nottingham, Michael A. Perlin, Dhirpal Shah +4

Despite major ongoing advancements in neutral atom hardware technology, there remains limited work in systems-level software tailored to overcoming the challenges of neutral atom q…

quant-ph2023

VarSaw: Application-tailored Measurement Error Mitigation for Variational Quantum Algorithms

Siddharth Dangwal, Gokul Subramanian Ravi, Poulami Das +3

For potential quantum advantage, Variational Quantum Algorithms (VQAs) need high accuracy beyond the capability of today's NISQ devices, and thus will benefit from error mitigation…