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From the 2 of 5.7k papers with an AI index.

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20022026
most citedQuantum ESPRESSO: a modular and open-source software project for quantum simulations of materials

29.3k citations

Showing 2019 · quant-phShow all

7 papers · 2 filters

quant-ph20191 cited

Quantum versus Randomized Communication Complexity, with Efficient Players

Uma Girish, Ran Raz, Avishay Tal

We study a new type of separation between quantum and classical communication complexity which is obtained using quantum protocols where all parties are efficient, in the sense tha…

quant-ph201938 cited

Full-Stack, Real-System Quantum Computer Studies: Architectural Comparisons and Design Insights

Prakash Murali, Norbert Matthias Linke, Margaret Martonosi +3

In recent years, Quantum Computing (QC) has progressed to the point where small working prototypes are available for use. Termed Noisy Intermediate-Scale Quantum (NISQ) computers,…

quant-ph2019130 cited

Statistical Assertions for Validating Patterns and Finding Bugs in Quantum Programs

Yipeng Huang, Margaret Martonosi

In support of the growing interest in quantum computing experimentation, programmers need new tools to write quantum algorithms as program code. Compared to debugging classical pro…

quant-ph201914 cited

Resource Optimized Quantum Architectures for Surface Code Implementations of Magic-State Distillation

Adam Holmes, Yongshan Ding, Ali Javadi-Abhari +3

Quantum computers capable of solving classically intractable problems are under construction, and intermediate-scale devices are approaching completion. Current efforts to design l…

quant-ph201932 cited

Fast high-fidelity entangling gates for spin qubits in Si double quantum dots

F. A. Calderon-Vargas, George S. Barron, Xiu-Hao Deng +3

Implementing high-fidelity two-qubit gates in single-electron spin qubits in silicon double quantum dots is still a major challenge. In this work, we employ analytical methods to d…

quant-ph201920 cited

Noise-Adaptive Compiler Mappings for Noisy Intermediate-Scale Quantum Computers

Prakash Murali, Jonathan M. Baker, Ali Javadi Abhari +2

A massive gap exists between current quantum computing (QC) prototypes, and the size and scale required for many proposed QC algorithms. Current QC implementations are prone to noi…