Area of research
Artificial Intelligence · Hardware and Architecture
Research interest
Research interests include Quantum Computing Algorithms and Architecture, Quantum Information and Cryptography, Parallel Computing and Optimization Techniques, and Quantum and electron transport phenomena.
Quantum-centric supercomputing for materials science: A perspective on challenges and future directions
NAPA: Intermediate-Level Variational Native-Pulse Ansatz for Variational Quantum Algorithms
Codesign of quantum error-correcting codes and modular chiplets in the presence of defects
Quantum computing for oncology
Better Than Worst-Case Decoding for Quantum Error Correction
Fast Fingerprinting of Cloud-based NISQ Quantum Computers
Superstaq: Deep Optimization of Quantum Programs
Exploring ququart computation on a transmon using optimal control
Navigating the Dynamic Noise Landscape of Variational Quantum Algorithms with QISMET
SnCQA: A hardware-efficient equivariant quantum convolutional circuit architecture
QuantumNAS: Noise-Adaptive Search for Robust Quantum Circuits
SupermarQ: A Scalable Quantum Benchmark Suite
Scaling Superconducting Quantum Computers with Chiplet Architectures
Optimized SWAP networks with equivalent circuit averaging for QAOA
Giallar: push-button verification for the qiskit Quantum compiler
CAFQA: A Classical Simulation Bootstrap for Variational Quantum Algorithms
DigiQ: A Scalable Digital Controller for Quantum Computers Using SFQ Logic
VAQEM: A Variational Approach to Quantum Error Mitigation
Preparation of metrological states in dipolar-interacting spin systems
TorchQuantum Case Study for Robust Quantum Circuits
TimeStitch: Exploiting Slack to Mitigate Decoherence in Quantum Circuits
Quantum Computing in the Cloud: Analyzing job and machine characteristics
Adaptive job and resource management for the growing quantum cloud
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
Reoptimization of Quantum Circuits via Hierarchical Synthesis
<inline-formula><tex-math notation="LaTeX">$O(N^3)$</tex-math></inline-formula> Measurement Cost for Variational Quantum Eigensolver on Molecular Hamiltonians
Time-sliced quantum circuit partitioning for modular architectures
Quantum Computing for Enhancing Grid Security
Collaborative Research: EPiQC: Enabling Practical-Scale Quantum Computation
Collaborative Research: PIF: Scalable Quantum Computers in the Presence of Physical Noise: a Study of Surface Codes with Realistic Errors at the Algorithmic Level
Collaborative Research: PIF: Scalable Quantum Computers in the Presence of Physical Noise: a Study of Surface Codes with Realistic Errors at the Algorithmic Level
Collaborative Research: EMT: Novel Operations, Circuit Optimization, and Technology Evaluation for Large-Scale, Fault-Tolerant Quantum Computing
Collaborative Research: CT-T: A Vertical Systems Framework for Effective Defense against Memory-Based Attacks
ITR: Synchroscalar: Exploiting Synchronized Clock Domains for Energy Efficient Multirate Embedded Computation
CAREER: Care and Feeding of High-Performance Processors with Reconfigurable Memory Systems