257 citations · 989 across the 22 of their papers we have counts for
21 papers · 1 filter
Cutting Quantum Circuits to Run on Quantum and Classical Platforms
Wei Tang, Margaret Martonosi
Quantum computing (QC) offers a new computing paradigm that has the potential to provide significant speedups over classical computing. Each additional qubit doubles the size of th…
Optimized Quantum Program Execution Ordering to Mitigate Errors in Simulations of Quantum Systems
Teague Tomesh, Kaiwen Gui, Pranav Gokhale +4
Simulating the time evolution of a physical system at quantum mechanical levels of detail -- known as Hamiltonian Simulation (HS) -- is an important and interesting problem across…
SupermarQ: A Scalable Quantum Benchmark Suite
Teague Tomesh, Pranav Gokhale, Victory Omole +7
The emergence of quantum computers as a new computational paradigm has been accompanied by speculation concerning the scope and timeline of their anticipated revolutionary changes.…
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…
Logical Abstractions for Noisy Variational Quantum Algorithm Simulation
Yipeng Huang, Steven Holtzen, Todd Millstein +2
Due to the unreliability and limited capacity of existing quantum computer prototypes, quantum circuit simulation continues to be a vital tool for validating next generation quantu…
CutQC: Using Small Quantum Computers for Large Quantum Circuit Evaluations
Wei Tang, Teague Tomesh, Martin Suchara +2
Quantum computing (QC) is a new paradigm offering the potential of exponential speedups over classical computing for certain computational problems. Each additional qubit doubles t…