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 Quantum-Dot Cellular Automata.
Better Than Worst-Case Decoding for Quantum Error Correction
Fast Fingerprinting of Cloud-based NISQ Quantum Computers
Exploring ququart computation on a transmon using optimal control
Navigating the Dynamic Noise Landscape of Variational Quantum Algorithms with QISMET
Scaling Superconducting Quantum Computers with Chiplet Architectures
CAFQA: A Classical Simulation Bootstrap for Variational Quantum Algorithms
TimeStitch: Exploiting Slack to Mitigate Decoherence in Quantum Circuits
Exploiting Long-Distance Interactions and Tolerating Atom Loss in Neutral Atom Quantum Architectures
TILT: Achieving Higher Fidelity on a Trapped-Ion Linear-Tape Quantum Computing Architecture
Time-sliced quantum circuit partitioning for modular architectures
Resource-Efficient Quantum Computing by Breaking Abstractions
Extending the Frontier of Quantum Computers With Qutrits
Noise-Adaptive Compiler Mappings for Noisy Intermediate-Scale Quantum Computers
Collaborative Research: EAR-Climate: Linkages Between Glacio-climatic, Hydrothermal, and Volcanic Processes in the Central Andes
Collaborative Research: Adaptation or opportunity? Using mammal sucking lice to determine drivers of host-parasite associations
Collaborative Research: Origins and drivers of extinction of Caribbean avifauna