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20162022
most citedSoftware Mitigation of Crosstalk on Noisy Intermediate-Scale Quantum Computers

257 citations · 479 across the 11 of their papers we have counts for

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8 papers · 1 filter

quant-ph202267 cited

Assessing requirements to scale to practical quantum advantage

Michael E. Beverland, Prakash Murali, Matthias Troyer +7

While quantum computers promise to solve some scientifically and commercially valuable problems thought intractable for classical machines, delivering on this promise will require…

quant-ph2022

Adaptive job and resource management for the growing quantum cloud

Gokul Subramanian Ravi, Kaitlin N. Smith, Prakash Murali +1

As the popularity of quantum computing continues to grow, efficient quantum machine access over the cloud is critical to both academic and industry researchers across the globe. An…

quant-ph202126 cited

Designing calibration and expressivity-efficient instruction sets for quantum computing

Prakash Murali, Lingling Lao, Margaret Martonosi +1

Near-term quantum computing (QC) systems have limited qubit counts, high gate (instruction) error rates, and typically support a minimal instruction set having one type of two-qubi…

quant-ph202038 cited

Resource-Efficient Quantum Computing by Breaking Abstractions

Yunong Shi, Pranav Gokhale, Prakash Murali +11

Building a quantum computer that surpasses the computational power of its classical counterpart is a great engineering challenge. Quantum software optimizations can provide an acce…

quant-ph2020

Architecting Noisy Intermediate-Scale Trapped Ion Quantum Computers

Prakash Murali, Dripto M. Debroy, Kenneth R. Brown +1

Trapped ions (TI) are a leading candidate for building Noisy Intermediate-Scale Quantum (NISQ) hardware. TI qubits have fundamental advantages over other technologies such as super…

quant-ph2020257 cited

Software Mitigation of Crosstalk on Noisy Intermediate-Scale Quantum Computers

Prakash Murali, David C. McKay, Margaret Martonosi +1

Crosstalk is a major source of noise in Noisy Intermediate-Scale Quantum (NISQ) systems and is a fundamental challenge for hardware design. When multiple instructions are executed…