Area of research
Artificial Intelligence · Atomic and Molecular Physics, and Optics
Research interest
Research interests include Quantum Computing Algorithms and Architecture, Quantum Information and Cryptography, Quantum and electron transport phenomena, and Parallel Computing and Optimization Techniques.
Practical Introduction to Benchmarking and Characterization of Quantum Computers
Quantum-centric supercomputing for materials science: A perspective on challenges and future directions
Superstaq: Deep Optimization of Quantum Programs
SupermarQ: A Scalable Quantum Benchmark Suite
Optimized SWAP networks with equivalent circuit averaging for QAOA
CAFQA: A Classical Simulation Bootstrap for Variational Quantum Algorithms
VAQEM: A Variational Approach to Quantum Error Mitigation
Quantum Computing in the Cloud: Analyzing job and machine characteristics
<inline-formula><tex-math notation="LaTeX">$O(N^3)$</tex-math></inline-formula> Measurement Cost for Variational Quantum Eigensolver on Molecular Hamiltonians
OpenFermion: the electronic structure package for quantum computers
Quantum Computing for Enhancing Grid Security
Resource-Efficient Quantum Computing by Breaking Abstractions
Extending the Frontier of Quantum Computers With Qutrits
Optimization of Simultaneous Measurement for Variational Quantum Eigensolver Applications
Optimized Compilation of Aggregated Instructions for Realistic Quantum Computers
Optimized surface code communication in superconducting quantum computers