26 citations · 53 across the 5 of their papers we have counts for
8 papers
Software mitigation of coherent two-qubit gate errors
Lingling Lao, Alexander Korotkov, Zhang Jiang +3
Two-qubit gates are important components of quantum computing. However, unwanted interactions between qubits (so-called parasitic gates) can be particularly problematic and degrade…
2QAN: A quantum compiler for 2-local qubit Hamiltonian simulation algorithms
Lingling Lao, Dan E. Browne
Simulating quantum systems is one of the most important potential applications of quantum computers. The high-level circuit defining the simulation needs to be compiled into one th…
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…
Realizing Quantum Algorithms on Real Quantum Computing Devices
Carmen G. Almudever, Lingling Lao, Robert Wille +1
Quantum computing is currently moving from an academic idea to a practical reality. Quantum computing in the cloud is already available and allows users from all over the world to…
OpenQL : A Portable Quantum Programming Framework for Quantum Accelerators
N. Khammassi, I. Ashraf, J. v. Someren +6
With the potential of quantum algorithms to solve intractable classical problems, quantum computing is rapidly evolving and more algorithms are being developed and optimized. Expre…
Fault-tolerant Quantum Error Correction on Near-term Quantum Processors using Flag and Bridge Qubits
Lingling Lao, Carmen G. Almudever
Fault-tolerant (FT) computation by using quantum error correction (QEC) is essential for realizing large-scale quantum algorithms. Devices are expected to have enough qubits to dem…